Rhabdoid tumor predisposition syndrome 1 (RTPS1) is an autosomal dominant cancer predisposition caused by heterozygous germline loss-of-function variants in SMARCB1, which encodes a core subunit of the SWI/SNF (BAF) ATP-dependent chromatin remodelling complex. Carriers develop malignant rhabdoid tumours in infancy and early childhood at central nervous system, renal and extrarenal soft tissue sites, frequently synchronously at more than one site. Roughly a third of children with a rhabdoid tumour carry a germline SMARCB1 variant; germline cases present at a younger age and have a worse outcome than sporadic cases. Tumours arise by classical two-hit inactivation, and are otherwise notable for a near-silent somatic mutational landscape, so that SMARCB1 loss is close to the entire oncogenic mechanism.
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name: Rhabdoid Tumor Predisposition Syndrome 1
creation_date: "2026-08-31T00:00:00Z"
description: >-
Rhabdoid tumor predisposition syndrome 1 (RTPS1) is an autosomal dominant
cancer predisposition caused by heterozygous germline loss-of-function
variants in SMARCB1, which encodes a core subunit of the SWI/SNF (BAF)
ATP-dependent chromatin remodelling complex. Carriers develop malignant
rhabdoid tumours in infancy and early childhood at central nervous system,
renal and extrarenal soft tissue sites, frequently synchronously at more
than one site. Roughly a third of children with a rhabdoid tumour carry a
germline SMARCB1 variant; germline cases present at a younger age and have
a worse outcome than sporadic cases. Tumours arise by classical two-hit
inactivation, and are otherwise notable for a near-silent somatic mutational
landscape, so that SMARCB1 loss is close to the entire oncogenic mechanism.
category: Mendelian
parents:
- hereditary disease
synonyms:
- RTPS1
- SMARCB1 familial rhabdoid tumor
- familial rhabdoid tumor caused by mutation in SMARCB1
- rhabdoid predisposition syndrome type 1
disease_term:
preferred_term: rhabdoid tumor predisposition syndrome 1
term:
id: MONDO:0012252
label: rhabdoid tumor predisposition syndrome 1
inheritance:
- name: Autosomal dominant inheritance
inheritance_term:
preferred_term: Autosomal dominant inheritance
term:
id: HP:0000006
label: Autosomal dominant inheritance
description: >-
RTPS1 is transmitted as an autosomal dominant trait with high but
incomplete penetrance. A large proportion of probands carry a de novo
variant, and germline mosaicism accounts for recurrence in siblings of
apparently unaffected parents. Penetrance is high.
evidence:
- reference: PMID:29215836
reference_title: "Rhabdoid Tumor Predisposition Syndrome."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
The vast majority of individuals with SMARCB1-related RTPS have a de novo
disease-causing SMARCB1 germline variant.
explanation: >-
GeneReviews confirms that most RTPS1 probands carry a de novo variant.
- reference: PMID:29215836
reference_title: "Rhabdoid Tumor Predisposition Syndrome."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
The penetrance of SMARCB1-related RTPS may be extremely high in individuals
who inherit a SMARCB1 disease-causing variant.
explanation: >-
States the high penetrance of the SMARCB1 form, the contrast with RTPS2.
- reference: PMID:21108436
reference_title: "Spectrum of SMARCB1/INI1 mutations in familial and sporadic rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Families may demonstrate incomplete penetrance and gonadal mosaicism, which
must be considered when counseling families of patients with rhabdoid tumor.
explanation: >-
Establishes incomplete penetrance and gonadal mosaicism as counselling
considerations in RTPS1 families.
- reference: PMID:21108436
reference_title: "Spectrum of SMARCB1/INI1 mutations in familial and sporadic rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
There were nine cases that demonstrated parent to child transmission of a
mutated copy of SMARCB1.
explanation: >-
Documents vertical transmission consistent with autosomal dominant
inheritance.
pathophysiology:
- name: Germline SMARCB1 Loss-of-Function
conforms_to: "germline_two_hit_tumor_predisposition#Constitutional First-Hit Tumor Suppressor Inactivation"
biological_scale: MOLECULAR
description: >-
A heterozygous germline deletion, nonsense or frameshift SMARCB1 allele
provides the constitutional first hit in every cell of the developing
child.
genes:
- preferred_term: SMARCB1
term:
id: hgnc:11103
label: SMARCB1
evidence:
- reference: PMID:21108436
reference_title: "Spectrum of SMARCB1/INI1 mutations in familial and sporadic rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Germline mutations and deletions of SMARCB1/INI1 in chromosome band 22q11.2
predispose patients to rhabdoid tumor and schwannomatosis.
explanation: >-
Names the germline lesion and the two tumour phenotypes it predisposes to.
- reference: PMID:21108436
reference_title: "Spectrum of SMARCB1/INI1 mutations in familial and sporadic rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Approximately one-third of newly diagnosed patients with rhabdoid tumor have
an underlying genetic predisposition to tumors due to a germline SMARCB1
alteration.
explanation: >-
Quantifies how often a rhabdoid tumour is germline-driven, the figure behind
testing every child at diagnosis.
downstream:
- target: Somatic Inactivation of the Second SMARCB1 Allele
description: >-
The constitutional allele is present in every cell, so a single stochastic
somatic event in any susceptible progenitor is sufficient to complete
biallelic inactivation.
- name: Somatic Inactivation of the Second SMARCB1 Allele
conforms_to: "germline_two_hit_tumor_predisposition#Somatic Second-Hit Inactivation of the Wild-Type Allele"
biological_scale: MOLECULAR
description: >-
Loss of the remaining wild-type allele in a susceptible progenitor,
typically by deletion or copy-neutral loss of heterozygosity, completes
biallelic inactivation and initiates the tumour.
genes:
- preferred_term: SMARCB1
term:
id: hgnc:11103
label: SMARCB1
evidence:
- reference: PMID:24853101
reference_title: "Mechanisms by which SMARCB1 loss drives rhabdoid tumor growth."
supports: SUPPORT
evidence_source: MODEL_ORGANISM
snippet: >-
Mouse models validated Smarcb1 as a bona fide tumor suppressor, as Smarcb1
inactivation in mice results in 100% of the animals rapidly developing
cancer.
explanation: >-
Establishes SMARCB1 as a true tumour suppressor whose inactivation is
sufficient to drive tumorigenesis.
downstream:
- target: SWI/SNF Chromatin Remodelling Complex Dysfunction
description: >-
Complete loss of the SMARCB1 core subunit destabilises the residual BAF
complex and impairs nucleosome repositioning.
- name: SWI/SNF Chromatin Remodelling Complex Dysfunction
conforms_to: "germline_two_hit_tumor_predisposition#Biallelic Tumor Suppressor Inactivation in a Susceptible Cell"
biological_scale: MOLECULAR
description: >-
Loss of the SMARCB1 core subunit does not dismantle the BAF complex, which
still assembles without it. What it destabilises is the complex's chromatin
occupancy: targeting to promoters and typical enhancers is impaired and the
complex is redistributed away from the sites it normally maintains. The
distinction matters, because it makes rhabdoid tumorigenesis an epigenetic
mislocalisation defect rather than a loss of remodelling capacity.
evidence:
- reference: PMID:24853101
reference_title: "Mechanisms by which SMARCB1 loss drives rhabdoid tumor growth."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
SMARCB1 (INI1/SNF5/BAF47), a core subunit of the SWI/SNF (BAF)
chromatin-remodeling complex, is inactivated in the large majority of
rhabdoid tumors, and germline heterozygous SMARCB1 mutations form the basis
for rhabdoid predisposition syndrome.
explanation: >-
Identifies SMARCB1 as a core BAF subunit and links its loss to both sporadic
and germline rhabdoid disease.
- reference: PMID:24853101
reference_title: "Mechanisms by which SMARCB1 loss drives rhabdoid tumor growth."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
It has been reported dispensable for formation of the SWI/SNF complex (42)
but implicated in contributing to the targeting of the SWI/SNF complex to
promoters (43).
explanation: >-
Supports the corrected claim: SMARCB1 is not required to assemble the
complex, but is required to target it, so its loss is an occupancy defect
rather than a structural one.
- reference: PMID:24853101
reference_title: "Mechanisms by which SMARCB1 loss drives rhabdoid tumor growth."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
Given the absence of genomic instability despite the rapidity by which
SMARCB1 deficient cancers arise both in humans and mice, these findings
collectively suggest that the initiation and progression of aggressive
cancers caused by SMARCB1 loss may not arise due to effects upon genome
integrity, but rather epigenetically via perturbation of transcriptional
regulation.
explanation: >-
Establishes the epigenetic rather than genomic-instability basis of rhabdoid
tumorigenesis, the reason this entry models a chromatin-occupancy chain.
downstream:
- target: Failure of Enhancer-Mediated Differentiation
description: >-
Without functional BAF activity at typical enhancers, lineage
differentiation programmes are never activated and PRC2-mediated
repression goes unopposed.
- name: Failure of Enhancer-Mediated Differentiation
biological_scale: CELLULAR
description: >-
Without functional BAF activity at typical enhancers, lineage
differentiation programmes are not activated and progenitors remain in a
proliferative, undifferentiated state. Loss of BAF-mediated opposition to
PRC2 leaves EZH2-dependent repression unchecked at these loci.
evidence:
- reference: PMID:24853101
reference_title: "Mechanisms by which SMARCB1 loss drives rhabdoid tumor growth."
supports: SUPPORT
evidence_source: IN_VITRO
snippet: >-
deletion of SMARCB1 led to elevated expression and recruitment of EZH2 to
Polycomb targets that became broadly H3K27-trimethylated and repressed in
SMARCB1-deficient fibroblasts and cancers
explanation: >-
Directly supports the unchecked EZH2-dependent PRC2 repression this node
asserts, replacing a generic relevance statement that supported nothing
about enhancers, differentiation or PRC2.
downstream:
- target: Rhabdoid Tumorigenesis
description: >-
Progenitors held in an undifferentiated, proliferative state give rise to
malignant rhabdoid tumours.
- name: Rhabdoid Tumorigenesis
conforms_to: "germline_two_hit_tumor_predisposition#Clonal Expansion and Tumor Initiation"
biological_scale: TISSUE
description: >-
The arrested progenitor gives rise to a malignant rhabdoid tumour, which
may arise in the central nervous system as atypical teratoid/rhabdoid
tumour, in the kidney, or in extrarenal soft tissue, and in RTPS1
frequently at more than one site synchronously.
animal_models:
- name: Conditional Smarcb1 and Nf2 knockout mouse
species: Mouse
genotype: Tissue- and developmental-stage-specific conditional Smarcb1 and/or Nf2 deletion
publication: PMID:28824165
description: >-
A conditional knockout series that varies the developmental timing of
Smarcb1 loss, showing that the same gene produces rhabdoid tumours or
schwannomas depending on when in development the allele is lost.
modeled_mechanisms:
- target: Rhabdoid Tumorigenesis
relationship: RECAPITULATES
fidelity: MODERATE
description: >-
Smarcb1 loss in early neural crest generates cranial nerve and meningeal
tumours with the histology and molecular profile of human rhabdoid tumours.
limitations: >-
The tumours arise in cranial nerves and meninges rather than the
infratentorial sites typical of human ATRT, and the model uses conditional
somatic deletion rather than a constitutional heterozygous allele with a
stochastic second hit.
evidence:
- reference: PMID:28824165
reference_title: "Timing of Smarcb1 and Nf2 inactivation determines schwannoma versus rhabdoid tumor development."
supports: SUPPORT
evidence_source: MODEL_ORGANISM
snippet: >-
Smarcb1 loss in early neural crest was necessary to initiate tumorigenesis
in the cranial nerves and meninges with typical histological features and
molecular profiles of human rhabdoid tumors.
explanation: >-
Establishes that early developmental Smarcb1 loss is what initiates
rhabdoid tumorigenesis in this model.
evidence:
- reference: PMID:28824165
reference_title: "Timing of Smarcb1 and Nf2 inactivation determines schwannoma versus rhabdoid tumor development."
supports: SUPPORT
evidence_source: MODEL_ORGANISM
snippet: >-
Germline mutations of the SMARCB1 gene predispose to two distinct tumor
syndromes: rhabdoid tumor predisposition syndrome, with malignant pediatric
tumors mostly developing in brain and kidney, and familial schwannomatosis,
with adulthood benign tumors involving cranial and peripheral nerves.
explanation: >-
Frames the question this model answers, namely why one germline gene yields
two clinically distinct syndromes.
phenotypes:
- category: Neoplastic
name: Atypical Teratoid Rhabdoid Tumor
description: >-
Malignant rhabdoid tumour of the central nervous system, typically
infratentorial and presenting in the first two years of life. It is the
commonest tumour in RTPS1 and carries the worst prognosis.
phenotype_term:
preferred_term: Atypical teratoid/rhabdoid tumor
term:
id: HP:0034401
label: Atypical teratoid/rhabdoid tumor
onset:
onset_category: INFANTILE
evidence:
- reference: PMID:29215836
reference_title: "Rhabdoid Tumor Predisposition Syndrome."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
They often occur in the central nervous system (i.e., atypical
teratoid/rhabdoid tumor]); more than 50% occur in the cerebellum.
explanation: >-
Gives the site distribution within the CNS, which the general germline
proportion quote could not supply for this specific phenotype.
- category: Neoplastic
name: Rhabdoid Tumor of the Kidney
description: >-
Malignant rhabdoid tumour of the kidney, historically described as a
rhabdoid variant of Wilms tumour before it was recognised as a distinct
SMARCB1-driven entity.
phenotype_term:
preferred_term: Rhabdoid tumor of the kidney
term:
id: HP:0034402
label: Rhabdoid tumor of the kidney
onset:
onset_category: INFANTILE
evidence:
- reference: PMID:29215836
reference_title: "Rhabdoid Tumor Predisposition Syndrome."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
Other common locations include extracranial malignant rhabdoid tumors (e.g.,
rhabdoid tumors of the head and neck, paravertebral muscles, liver, bladder,
mediastinum, retroperitoneum, pelvis, and heart), rhabdoid tumor of the
kidney, and possibly small-cell carcinoma of the ovary, hypercalcemic type
(SCCOHT).
explanation: >-
Names rhabdoid tumour of the kidney specifically, which the general germline
proportion quote could not.
- category: Neoplastic
name: Extrarenal Extracranial Rhabdoid Tumor
description: >-
Malignant rhabdoid tumour arising in soft tissue, liver or other
extrarenal extracranial sites.
phenotype_term:
preferred_term: Rhabdoid tumor
term:
id: HP:0034557
label: Rhabdoid tumor
- category: Neoplastic
name: Synchronous Multifocal Rhabdoid Tumors
description: >-
Presentation with tumours at more than one anatomical site simultaneously
is characteristic of germline rather than sporadic disease and should
prompt germline SMARCB1 testing.
evidence:
- reference: PMID:29215836
reference_title: "Rhabdoid Tumor Predisposition Syndrome."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
More than 70% of individuals with RTPS present before age 12 months with
synchronous tumors that exhibit aggressive clinical behavior.
explanation: >-
Quantifies both the infantile onset and the synchronous multifocal
presentation that marks germline disease.
- reference: PMID:37548271
reference_title: "Constitutional balanced translocations involving SMARCB1: A rare cause of rhabdoid tumor predisposition syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
RTPS1 should be evaluated in all individuals with rhabdoid tumor and is more
likely in those with a young age at presentation (occasionally congenital
presentation), multiple primary tumors, or a family history of rhabdoid
tumor or RTPS1.
explanation: >-
Names multiple primary tumours as a feature pointing to germline disease.
phenotype_term:
preferred_term: Rhabdoid tumor
term:
id: HP:0034557
label: Rhabdoid tumor
- category: Neoplastic
name: Schwannomatosis
description: >-
A distinct allelic presentation in which germline SMARCB1 variants,
typically hypomorphic, cause multiple non-vestibular schwannomas in
adults rather than infantile rhabdoid tumours.
phenotype_term:
preferred_term: Schwannoma
term:
id: HP:0100008
label: Schwannoma
evidence:
- reference: PMID:24933152
reference_title: "SMARCB1 mutations in schwannomatosis and genotype correlations with rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
SMARCB1 mutations have been found in 45% of familial probands and 9% of
sporadic patients.
explanation: >-
Quantifies the SMARCB1 contribution to schwannomatosis in familial versus
sporadic cases.
- reference: PMID:24933152
reference_title: "SMARCB1 mutations in schwannomatosis and genotype correlations with rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
There is a clear genotype-phenotype correlation, with germline rhabdoid
mutations being significantly more likely to be centrally placed, involve
multiple exon deletions, and be truncating mutations.
explanation: >-
Explains why the same gene yields infantile rhabdoid tumours or adult
schwannomatosis: truncating central alleles drive the rhabdoid phenotype
while terminal non-truncating alleles drive schwannomatosis.
- reference: PMID:28824165
reference_title: "Timing of Smarcb1 and Nf2 inactivation determines schwannoma versus rhabdoid tumor development."
supports: SUPPORT
evidence_source: MODEL_ORGANISM
snippet: >-
By inducing Smarcb1 loss at later developmental stage in the Schwann cell
lineage, in addition to biallelic Nf2 gene inactivation, we generated the
first mouse model developing schwannomas with the same underlying gene
mutations found in schwannomatosis patients.
explanation: >-
Shows the schwannoma phenotype requires later-stage Smarcb1 loss plus NF2
inactivation, a developmental-timing mechanism complementing the
allele-position correlation.
- category: Neoplastic
name: Choroid Plexus Carcinoma
description: >-
Choroid plexus carcinoma occurs in a minority of carriers and enters the
differential with the TP53-driven form seen in Li-Fraumeni syndrome.
phenotype_term:
preferred_term: Choroid plexus carcinoma
term:
id: HP:0030392
label: Choroid plexus carcinoma
genetic:
- name: SMARCB1
notes: >-
Germline SMARCB1 alleles causing RTPS1 are predominantly truncating point
and frameshift variants, intragenic deletions and duplications, and larger
22q11.2 deletions. Constitutional balanced translocations disrupting
SMARCB1 are a rare cause that standard copy-number and sequencing panels
miss, so structural variant analysis is warranted when those are negative.
Allele position and type separate the rhabdoid and schwannomatosis
phenotypes.
gene_term:
preferred_term: SMARCB1
term:
id: hgnc:11103
label: SMARCB1
relationship_type: CAUSATIVE
variant_origin: GERMLINE
evidence:
- reference: PMID:21108436
reference_title: "Spectrum of SMARCB1/INI1 mutations in familial and sporadic rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
These abnormalities included point and frameshift mutations, intragenic
deletions and duplications, and larger deletions including regions both
proximal and distal to SMARCB1.
explanation: Enumerates the germline SMARCB1 variant classes found in the cohort.
- reference: PMID:37548271
reference_title: "Constitutional balanced translocations involving SMARCB1: A rare cause of rhabdoid tumor predisposition syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Most known RTPS1-related SMARCB1 gene mutations are copy number variants
(CNVs) or single nucleotide variants/indels, but structural variant analysis
(SVA) is not usually included in the molecular evaluation.
explanation: >-
Identifies the diagnostic gap that constitutional balanced translocations
fall through.
- reference: PMID:24933152
reference_title: "SMARCB1 mutations in schwannomatosis and genotype correlations with rhabdoid tumors."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Comparison with germline SMARCB1 mutations in patients with rhabdoid tumors
showed that the schwannomatosis mutations were significantly more likely to
occur at either end of the gene and be nontruncating mutations (P < 0.0001).
explanation: >-
Statistical basis for the allele-position genotype-phenotype correlation.
treatments:
- name: Multimodal Therapy for Atypical Teratoid Rhabdoid Tumor
description: >-
Intensive multimodal therapy combining induction chemotherapy, high-dose
chemotherapy with stem cell rescue, and conformal radiation. The Children's
Oncology Group ACNS0333 trial established that this approach substantially
improves survival over historical controls in a disease that was previously
close to uniformly fatal.
therapeutic_modality: OTHER
treatment_term:
preferred_term: chemotherapy
term:
id: NCIT:C15632
label: Chemotherapy
evidence:
- reference: PMID:32105509
reference_title: "Efficacy of High-Dose Chemotherapy and Three-Dimensional Conformal Radiation for Atypical Teratoid/Rhabdoid Tumor: A Report From the Children's Oncology Group Trial ACNS0333."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
ACNS0333 therapy significantly reduced the risk of EFS events in patients <
36 months of age compared with the historical cohort (P < .0005; hazard
rate, 0.43; 95% CI, 0.28 to 0.66).
explanation: >-
Primary endpoint result showing the regimen more than halved event-free
survival events in infants versus historical controls.
- reference: PMID:32105509
reference_title: "Efficacy of High-Dose Chemotherapy and Three-Dimensional Conformal Radiation for Atypical Teratoid/Rhabdoid Tumor: A Report From the Children's Oncology Group Trial ACNS0333."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
Four-year EFS and overall survival for the entire cohort were 37% (95% CI,
25% to 49%) and 43% (95% CI, 31% to 55%), respectively.
explanation: >-
Absolute survival figures, which remain poor despite the improvement.
- name: Age-Stratified Tumor Surveillance
description: >-
Carriers are followed with whole-body MRI from diagnosis and an
age-stratified schedule of clinical examination, abdominal and neck
ultrasound, and brain and spine MRI, intensive in the first years of life
and relaxing after age five.
therapeutic_modality: OTHER
treatment_term:
preferred_term: Supportive Care
term:
id: NCIT:C15747
label: Supportive Care
target_mechanisms:
- target: Rhabdoid Tumorigenesis
description: >-
Surveillance aims to detect tumours at the earliest possible stage rather
than to prevent the underlying biallelic inactivation.
evidence:
- reference: PMID:29215836
reference_title: "Rhabdoid Tumor Predisposition Syndrome."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
Age 19 months to five years. Every three months, thorough clinical
examination including neurologic examination, ultrasound of the abdomen
and neck, and brain and spine MRI.
explanation: >-
The age-stratified surveillance schedule GeneReviews recommends for
carriers.
- name: Germline SMARCB1 Testing and Family Surveillance
description: >-
Because roughly a third of rhabdoid tumours are germline-driven, germline
SMARCB1 testing is indicated in every child presenting with a rhabdoid
tumour, with cascade testing and surveillance for at-risk relatives.
therapeutic_modality: OTHER
treatment_term:
preferred_term: genetic counseling
term:
id: NCIT:C15240
label: Genetic Counseling
evidence:
- reference: PMID:37548271
reference_title: "Constitutional balanced translocations involving SMARCB1: A rare cause of rhabdoid tumor predisposition syndrome."
supports: SUPPORT
evidence_source: HUMAN_CLINICAL
snippet: >-
RTPS1 should be evaluated in all individuals with rhabdoid tumor and is more
likely in those with a young age at presentation (occasionally congenital
presentation), multiple primary tumors, or a family history of rhabdoid
tumor or RTPS1.
explanation: Supports universal germline evaluation at rhabdoid tumour diagnosis.
diagnosis:
- name: Germline SMARCB1 molecular genetic testing
diagnosis_term:
preferred_term: genetic testing
term:
id: NCIT:C15709
label: Genetic Testing
description: >-
Germline testing is indicated in every child with a rhabdoid tumour, and
especially with young age at presentation, multiple primary tumours, or a
family history. Structural variant analysis should be added when sequencing
and copy-number testing are negative, since constitutional balanced
translocations disrupting SMARCB1 are missed by standard panels.
results: >-
A heterozygous germline pathogenic SMARCB1 variant establishes the diagnosis.
evidence:
- reference: PMID:29215836
reference_title: "Rhabdoid Tumor Predisposition Syndrome."
supports: SUPPORT
evidence_source: OTHER
snippet: >-
The diagnosis of RTPS is established in a proband with a rhabdoid tumor
and/or a family history of rhabdoid tumor and/or multiple SMARCB1- or
SMARCA4-deficient tumors (synchronous or metachronous), and a heterozygous
disease-causing germline variant in SMARCB1 (RTPS1) or SMARCA4 (RTPS2)
identified by molecular genetic testing.
explanation: >-
The molecular diagnostic criterion for both RTPS types.
references:
- reference: PMID:29215836
title: "Rhabdoid Tumor Predisposition Syndrome."
tags:
- GeneReviews
findings:
- statement: >-
GeneReviews provides the clinical baseline for both RTPS types, covering
tumour site distribution and age at presentation, the molecular diagnostic
criterion, the age-stratified whole-body MRI surveillance protocol, the
risk-reducing salpingo-oophorectomy discussion specific to SMARCA4, and the
penetrance contrast between the SMARCB1 and SMARCA4 forms.
datasets: []
Overview. Rhabdoid tumor predisposition syndrome 1 (RTPS1) is an autosomal dominant, highly penetrant childhood cancer predisposition syndrome caused by heterozygous germline loss-of-function variants in SMARCB1 (a core subunit of the SWI/SNF/BAF chromatin-remodeling complex), predisposing to malignant rhabdoid tumors of the CNS (atypical teratoid/rhabdoid tumor, AT/RT), kidney (rhabdoid tumor of the kidney, RTK), and extrarenal/extracranial soft-tissue sites, typically presenting in infancy. RTPS2 is the allelic-locus counterpart caused by germline SMARCA4 variants and is kept distinct below (design-decisions §3a: germline predisposition syndrome vs. the somatic tumors it predisposes to — RTPS1 is the constitutional condition; AT/RT, RTK, and MRT are its component neoplasms, each with their own somatic biology).
Key identifiers: - OMIM #609322 — RHABDOID TUMOR PREDISPOSITION SYNDROME 1; RTPS1 (omim.org/entry/609322) - Gene: SMARCB1, OMIM *601607, HGNC:11103, chromosome 22q11.23 - RTPS2 (allelic/distinct locus): OMIM #613325, gene SMARCA4, 19p13.2 — cited here only for contrast, not as RTPS1 content - GeneReviews: "Rhabdoid Tumor Predisposition Syndrome" (Bourdeaut F, Fréneaux P, Thebaud E, et al., updated periodically), NCBI Bookshelf NBK469816 — covers both RTPS1 and RTPS2 under one review - Orphanet: ORPHA231108, "Rhabdoid tumor predisposition syndrome" (umbrella term for RTPS1/RTPS2); MONDO:0016473. I did not find an Orphanet/MONDO identifier specific to RTPS1 alone in this search pass — flag this as unresolved rather than guessing a CURIE. - Related/component-tumor identifiers (do not conflate with the germline syndrome itself): Rhabdoid tumor, ORPHA69077 / MONDO:0002728 / ICD-10 C49.9; Atypical teratoid rhabdoid tumor, ORPHA99966 / MONDO:0020560 / ICD-11 2A00.1Y - NCI PDQ: "Rhabdoid Tumor Predisposition Syndrome Type 1" (NBK602739, cancer.gov/publications/pdq/information-summaries/genetics/rtps1-hp-pdq)
Synonyms: Rhabdoid predisposition syndrome 1; RTPS1; INI1-related rhabdoid predisposition; SMARCB1-related rhabdoid predisposition; (historically) malignant rhabdoid tumor predisposition syndrome.
Evidence base character: Information below is derived overwhelmingly from aggregated disease-level resources — case-series registries (European Rhabdoid Registry, Children's Oncology Group [COG] trials), literature reviews, and structured databases (OMIM, GeneReviews, ClinVar) — rather than large-scale EHR data, reflecting the rarity of the condition (single-digit-per-million annual incidence, see §9).
Disease-causal factor: Monogenic — heterozygous germline pathogenic loss-of-function variant in SMARCB1 (RTPS1). This is a Mendelian cancer predisposition syndrome; there is no meaningful environmental or infectious causal contribution to the germline lesion itself. Skipping penetrance/mosaicism mechanics per your standing context, but flagging the specific data points:
Genetic risk factors: - Germline SMARCB1 loss-of-function variants (truncating point mutations, whole/partial gene deletions, splice variants) — the causal lesion. - Constitutional structural rearrangements are a documented, non-trivial minority mechanism: constitutional 22q11.23 deletions encompassing SMARCB1 (PMID:21412926) and constitutional balanced translocations involving SMARCB1 as a rare RTPS1 mechanism, reported 2023 (PMID:37548271) — worth flagging for CMA/karyotype-negative-by-sequencing cases. - Modifier/second-hit factor: somatic inactivation of the remaining wild-type SMARCB1 allele (commonly via monosomy 22 or focal LOH) is required for tumorigenesis — the classic tumor-suppressor two-hit mechanism, noted without re-deriving it. - Genotype-severity correlation (important, not just background): RTPS1-causing variants cluster in exons 2–9 and are predominantly truncating (nonsense, frameshift, splice, whole/partial-gene deletion) (PMID:24933152, PMID:21108436). This is mechanistically and clinically distinct from the non-truncating, hypomorphic variants (missense, in-frame, or hotspot changes at the gene's 5′/3′ ends — e.g., c.41C>A p.Pro14His in ~10% and the 3′UTR c.82C>T in ~27% of schwannomatosis cases) that cause SMARCB1-related schwannomatosis* rather than RTPS1 — see §9 and §10 for how this drives differential surveillance.
Environmental risk factors: None established as disease-causal for RTPS1 itself (this is a germline predisposition, not a somatically-triggered sporadic tumor). Post-diagnosis, DNA-damaging exposures (radiation, chemotherapy, UV, tobacco) are flagged as secondary-malignancy risk factors in RTPS1 carriers, per GeneReviews management guidance, not as causes of the primary syndrome.
Protective factors: None reported in the literature for RTPS1 carriers specifically. RTPS2 (SMARCA4) shows incomplete penetrance, implying unidentified modifiers, but no specific protective allele or exposure has been characterized for either gene.
Gene-environment interaction: Not established for RTPS1; the condition is driven by a highly penetrant monogenic first hit plus a stochastic somatic second hit rather than by exposure-dependent risk modulation.
Framed per your instruction to keep germline-syndrome and somatic-tumor content separate: the "phenotype" of RTPS1 as a cancer predisposition syndrome is the pattern and timing of tumor development, not a set of dysmorphic/developmental features (contrast Coffin-Siris syndrome below, which does carry a distinct dysmorphic phenotype from non-truncating SMARCB1 variants).
| Phenotype | Type | Onset | Frequency | Notes / HPO suggestion |
|---|---|---|---|---|
| Atypical teratoid/rhabdoid tumor (AT/RT), CNS | Neoplasm | Median 4–7 months in RTPS1 vs. ~18 months sporadic (PMC12062526) | ~65% of RTPS1-associated tumors are CNS; >50% of CNS tumors are cerebellar/posterior fossa (GeneReviews) | HP:0030066 (Neoplasm of the central nervous system); consider MONDO:0020560 for the tumor entity itself |
| Rhabdoid tumor of the kidney (RTK) | Neoplasm | Infancy | ~9% of RTPS1 tumors (PMC12062526) | HP:0009726 (Renal neoplasm) |
| Extrarenal/extracranial malignant rhabdoid tumor (soft tissue, liver, mediastinum, retroperitoneum, pelvis, heart, head/neck) | Neoplasm | Infancy | ~26% of RTPS1 tumors | HP:0002664 (Neoplasm) as generic parent; site-specific HP terms per location |
| Synchronous/metachronous multifocal tumors | Disease-course feature | >70% present before 12 months with synchronous disease (GeneReviews) | >70% | Not itself an HP-codable "phenotype" but a defining disease-course claim |
| Congenital/perinatal presentation | Onset timing | Within first 28 days of life in a subset | Documented but not separately quantified in sources reviewed | HP:0003577 (Congenital onset) |
Severity/progression: Uniformly aggressive at presentation — "more than 70% of individuals with RTPS present before age 12 months with synchronous tumors that exhibit aggressive clinical behavior" (GeneReviews, NBK469816). The European Rhabdoid Registry reports 84.5% of RTPS patients experience tumor progression during follow-up, with 48% progressing while actively on chemotherapy (cited in PMC12062526; I have not independently verified the registry primary publication in this pass — flagging as a secondary-source claim, a lead rather than confirmed primary citation).
Quality of life: No RTPS1-specific EQ-5D/SF-36/PROMIS data were located in this search pass; QoL literature in this space is dominated by general pediatric-oncology intensive-therapy morbidity data rather than RTPS1-stratified instruments. This is a gap, not a null finding — say so rather than substitute adjacent pediatric-oncology QoL literature as if RTPS1-specific.
Causal gene: SMARCB1 (HGNC:11103, NCBI Gene 6598, Ensembl ENSG00000099956), OMIM *601607, chromosome 22q11.23. Protein: SMARCB1/INI1/SNF5/BAF47, a core, non-catalytic subunit of the SWI/SNF (BAF) ATP-dependent chromatin-remodeling complex.
Variant classification (ACMG/AMP via ClinGen/ClinVar): RTPS1-causing variants are classified pathogenic/likely pathogenic when predicted to cause loss of function. ClinVar entries include, e.g., NM_003073.5(SMARCB1):c.986+1G>A (splice-donor) and c.628+13C>T, both submitted against "Rhabdoid tumor predisposition syndrome 1" (ClinVar RCV000008489.3, RCV000407869).
Variant type/spectrum: - Nonsense, frameshift, canonical splice-site variants — dominant mechanism. - Whole-gene and single/multi-exon deletions — clinically important: gene-targeted deletion/duplication analysis detects an additional ~51% of probands beyond the ~49% found by sequence analysis alone (GeneReviews), meaning sequencing-only panels will miss roughly half of RTPS1 cases. This has direct implications for the KB's genetic-testing/diagnostics content — flag deletion/duplication analysis as non-optional in any RTPS1-focused definitions/diagnostics block. - Constitutional 22q11.23 microdeletion and balanced translocation mechanisms (PMID:21412926, PMID:37548271) — rarer, but real, and would be missed by exome/panel sequencing without CMA/karyotype.
Allele frequency: SMARCB1 is under strong population-level constraint against loss-of-function variation (consistent with its essential developmental role and haploinsufficiency mechanism), but I was unable to retrieve an exact current gnomAD pLI/LOEUF value in this search pass — do not fabricate a number; if a precise constraint metric is needed for the KB entry, pull it directly from the gnomAD browser (gnomad.broadinstitute.org) rather than from this report.
Somatic vs. germline origin: Germline SMARCB1 variants define RTPS1 by definition; the same gene is very frequently biallelically inactivated somatically in sporadic (non-syndromic) rhabdoid tumors — SMARCB1 immunohistochemical loss (absence of INI1 nuclear staining) is the diagnostic hallmark of rhabdoid tumors regardless of germline status. Germline SMARCB1 variants are found in roughly 25–35% of all newly diagnosed rhabdoid tumor patients (GeneReviews), rising to ~55% in those diagnosed before 6 months of age (PMC12062526) — a strong argument for near-universal germline testing in infantile-onset cases, which is exactly what current surveillance guidance reflects (§10).
Functional consequence: Loss of function / haploinsufficiency at the germline level; complete biallelic loss (protein-null) at the tumor level, detected by absent INI1 immunostaining.
Modifier genes: No validated modifier genes for RTPS1 severity/penetrance were identified in this pass, distinct from RTPS2 (SMARCA4), where incomplete penetrance is well documented but mechanistically unexplained.
Epigenetic information: Central to pathophysiology — see §6. SMARCB1 loss produces a genome-wide chromatin redistribution rather than a simple loss of enzymatic activity (mechanism detailed below), and the resulting rhabdoid tumors — and specifically AT/RT — are stratified into three epigenetically distinct molecular subgroups (ATRT-TYR, ATRT-SHH, ATRT-MYC) defined by DNA methylation and transcriptional signature despite near-identical underlying SMARCB1 genetics (Ho et al., consensus reinvestigation, Neuro-Oncology 2020; academic.oup.com/neuro-oncology/article/22/5/613/5691191). This is a case where genetic homogeneity masks profound epigenetic heterogeneity — worth flagging explicitly in a KB biological_scale: MOLECULAR node distinct from the syndrome-level genetic node.
Chromosomal abnormalities: Monosomy 22 and focal 22q11.23 LOH are the dominant somatic "second hit" mechanisms in tumors; germline 22q11.23 deletions/translocations are a rarer constitutional first-hit mechanism (above).
Not applicable as a causal contributor to RTPS1 (monogenic germline syndrome). No infectious agent, toxin, or lifestyle factor is implicated in causing SMARCB1 germline loss-of-function variants or in triggering the somatic second hit specifically in RTPS1 carriers, based on the literature retrieved. Post-treatment exposure-avoidance guidance (radiation, tobacco, UV, chemotherapy) targets secondary/therapy-related malignancy risk in survivors, not primary RTPS1 causation — this belongs in a treatment/survivorship node, not an environmental[] causal-mechanism node, if curated in dismech.
Ordered causal chain (RTPS1 → AT/RT, as the flagship manifestation; parallel chain applies to RTK/extrarenal MRT with organ-specific cell-of-origin substituted):
Branch point — AT/RT molecular subgrouping: Downstream of step 4/5, AT/RT tumors resolve into three DNA-methylation-defined molecular subgroups despite shared SMARCB1-null status (Torchia et al. foundational classification; consensus reinvestigation Ho et al., Neuro-Oncology 2020, academic.oup.com/neuro-oncology/article/22/5/613/5691191): - ATRT-TYR — typically infratentorial/posterior fossa, congenital/very early infantile onset, associated with better overall survival, and uniquely shows tumor-infiltrating NK-cell and CD4+ T-cell populations not seen in the other two subgroups (immune-microenvironment branch). - ATRT-SHH — enriched for supratentorial location, further resolved into SHH-1A (median onset ~18 months, 88% supratentorial), SHH-1B (median ~107 months — notably older, atypical for AT/RT), and SHH-2 (median ~13 months, 93% infratentorial/pineal-region) subclusters; associated with inferior outcomes, largely attributable to elevated metastatic risk. - ATRT-MYC — supratentorial, universally sensitive in vitro to multi-targeted tyrosine kinase inhibitors, representing a distinct therapeutic-vulnerability branch.
Molecular pathways: SWI/SNF (BAF) chromatin remodeling complex (core subunit loss); Polycomb Repressive Complex 2 / EZH2-mediated H3K27 trimethylation (unopposed following SWI/SNF loss); SHH pathway activation (ATRT-SHH subgroup); MYC pathway activation (ATRT-MYC subgroup).
Cellular processes: Blocked cellular differentiation; dysregulated cell-cycle progression/proliferation; in ATRT-TYR, an immune-infiltrated tumor microenvironment (NK/CD4+ T-cell).
Protein dysfunction: Complete loss of SMARCB1 protein (not misfolding/aggregation) — a null/loss-of-expression mechanism, confirmed diagnostically by absent INI1 nuclear immunostaining.
Suggested ontology terms: - GO (biological process): GO:0006338 (chromatin remodeling); GO:0016569 (covalent chromatin modification); consider a specific SWI/SNF complex assembly/positioning term if curating at that granularity. - GO (cellular component): GO:0016514 (SWI/SNF complex). - GO (molecular function): consider PRC2/EZH2 methyltransferase activity term for the differentiation-repression branch. - CL (cell type): neural-crest-derived progenitor terms for CNS/peripheral rhabdoid tumor cell-of-origin (per murine lineage tracing); renal progenitor terms for RTK — I did not resolve exact CL CURIEs in this pass and would defer to the dismech-terms skill/OAK lookup before binding. - UBERON: cerebellum/posterior fossa (AT/RT predominant site); kidney (RTK).
Molecular profiling: DNA methylation array profiling is the field-standard tool for ATRT subgroup assignment (rather than transcriptomics alone), reflecting the epigenetics-dominant biology described above. Single-cell/spatial transcriptomic characterization of the ATRT-TYR immune microenvironment is an active area (referenced generally in the molecular-landscape reviews retrieved; I did not pull a specific single-cell-atlas primary paper in this pass).
Organ level: - Primary: CNS (predominantly cerebellum/posterior fossa, >50% of CNS cases; supratentorial in the ATRT-SHH/MYC subgroups), kidney. - Secondary/other primary sites: head and neck, paravertebral muscle, liver, bladder, mediastinum, retroperitoneum, pelvis, heart (extrarenal/extracranial rhabdoid tumor sites, per GeneReviews). - Body systems: nervous system, renal/urinary system, and — in the extrarenal category — essentially any soft-tissue compartment.
Tissue/cell level: Rhabdoid tumor cells are characterized histologically by eccentric nuclei, prominent nucleoli, and eosinophilic cytoplasmic inclusions (classic "rhabdoid" morphology); cell of origin is inferred as neural-crest-derived progenitor for CNS/peripheral tumors based on murine lineage-tracing models (PMID:28824165) and renal progenitor for RTK.
Subcellular level: SMARCB1/SWI/SNF complex function is nuclear (chromatin-bound); the pathophysiology is a nuclear chromatin-regulatory defect (GO Cellular Component: nucleus/chromatin; SWI/SNF complex, GO:0016514) rather than a cytoplasmic or organellar process.
Localization: No consistent laterality pattern reported; AT/RT posterior-fossa tumors are often midline/cerebellar rather than lateralized.
Onset: Congenital to early infantile — median age 4–7 months for RTPS1-associated tumors versus ~18 months for sporadic rhabdoid tumors (PMC12062526); a subset present within the first 28 days of life (congenital). Onset pattern is acute/aggressive rather than insidious.
Progression: Rapid and aggressive by nature — European Rhabdoid Registry data (as summarized secondarily in PMC12062526) report 84.5% of RTPS patients experience progression during follow-up, with 48% progressing on active chemotherapy; 91% of relapses in the ACNS0333 COG trial cohort occurred within 2 years of enrollment (PMID:32105509). Disease course is not relapsing-remitting but progressive/refractory in a large fraction of cases.
Patterns: No spontaneous remission pattern is described; remission is treatment-induced only, and durable remission remains a minority outcome (see §11 survival figures). The literature explicitly frames early infancy (birth–5 years) as the critical surveillance window, after which tumor risk "dramatically decreases" (GeneReviews) — the basis for surveillance protocols tapering after age 5 (§10).
Epidemiology: Rhabdoid tumors overall are rare — annual incidence in children under 1 year: AT/RT ~8.1 per million, extracranial MRT ~5 per million, dropping to 0.6–2.2 per million at ages 1–4 years (GeneReviews). AT/RT constitutes <2–3% of all pediatric CNS tumors. RTPS1-attributable fraction: ~25–35% of newly diagnosed rhabdoid tumor patients overall, rising to ~55% of those diagnosed under 6 months of age (PMC12062526).
Inheritance pattern: Autosomal dominant. The large majority of RTPS1 cases are de novo; germline variants can arise on either the maternal or paternal allele. Inherited transmission from an unaffected or undiagnosed late-onset parent is reported but rare.
Penetrance: High — "penetrance of SMARCB1-related RTPS may be extremely high (>90% by age 5 years)," per GeneReviews, with the caveat (stated explicitly in the source, not my own hedge) that this estimate may be inflated by ascertainment bias absent systematic population-level screening. This contrasts with RTPS2 (SMARCA4), where penetrance is explicitly incomplete — flagging this distinction because it directly changes surveillance and counseling guidance between the two genes (do not extrapolate SMARCA4 penetrance data onto SMARCB1 carriers or vice versa).
Expressivity: Variable — "the types of RTPS-related tumors vary among family members with the same disease-causing variant" (GeneReviews), i.e., intrafamilial heterogeneity in tumor site/type even with an identical germline variant.
Germline mosaicism: Documented in SMARCB1-related RTPS1 and estimated to account for up to half of families with multiple affected siblings where parental testing is otherwise negative (GeneReviews) — directly relevant to recurrence-risk counseling when parental blood testing is uninformative.
Founder effects / consanguinity / carrier frequency: No RTPS1-specific founder populations, consanguinity association, or general-population carrier-frequency estimate was identified in this search pass; given the near-uniform de novo origin and high penetrance (functionally incompatible with silent carriage at meaningful population frequency), a meaningful "carrier frequency" concept does not straightforwardly apply the way it would for a recessive condition.
Population demographics: No specific ethnic/geographic enrichment was identified in the sources reviewed; the condition appears panethnic, consistent with its predominantly de novo mutational origin. Sex ratio was not reported as skewed in the sources reviewed.
Diagnostic criteria (GeneReviews): Diagnosis is established in a proband who has (a) a rhabdoid tumor and/or a family history of rhabdoid tumor and/or multiple SMARCB1-deficient tumors (synchronous or metachronous), and (b) identification of a disease-causing germline variant in SMARCB1 by molecular genetic testing.
Suggestive clinical features prompting testing: congenital presentation or onset within the first 28 days of life; rhabdoid tumor diagnosed under 12 months of age; advanced-stage disease at diagnosis; synchronous/multiple primary rhabdoid tumors; family history of rhabdoid tumor or SCCOHT (the latter specific to SMARCA4/RTPS2).
Laboratory/pathology: Immunohistochemical loss of SMARCB1 (INI1) nuclear staining in tumor tissue is the pathognomonic tumor-level finding (present regardless of germline vs. purely somatic origin) — this is a tumor-diagnostic test, not itself proof of germline RTPS1 status.
Molecular genetic testing: - Sequence analysis detects ~49% of RTPS1 probands; gene-targeted deletion/duplication analysis detects an additional ~51% (GeneReviews) — reinforcing that copy-number analysis is not optional. - Multigene panel testing (SMARCB1, SMARCA4, and related genes) is an alternative first-line approach. - Constitutional karyotype/CMA is indicated when a 22q11.23 structural rearrangement (deletion or balanced translocation) is suspected and not captured by sequencing (PMID:37548271, PMID:21412926).
Whole-body MRI at diagnosis: Recommended for all individuals regardless of age at initial RTPS1 diagnosis (GeneReviews) to detect synchronous occult tumors.
Surveillance protocol (SIOPE Host Genome Working Group consensus, Foulkes et al., summarized in GeneReviews and PMC8484234):
| Age | Recommended surveillance |
|---|---|
| Birth–6 months | Monthly (or at least every 2–3 months) clinical + neurologic exam; abdominal + neck ultrasound; head ultrasound or brain/spine MRI, or whole-body MRI |
| 7–18 months | Every 2–3 months clinical/neurologic exam + abdominal/neck ultrasound; consider brain/spine MRI |
| 19 months–5 years | Every 3 months clinical/neurologic exam + abdominal/neck ultrasound + brain/spine MRI |
| >5 years | Every 6 months clinical/neurologic exam; annual whole-body MRI (tumor risk "dramatically decreases" after age 5, per source language) |
An earlier/alternative formulation of the same 2017 expert consensus (Foulkes et al., Clin Cancer Res 2017, aacrjournals.org/clincancerres/article/23/12/e62/80076) specifies brain MRI every 3 months to age 5, abdominal ultrasound every 3 months with no upper age limit, and annual whole-body MRI from age 5 onward. Critically: screening is explicitly not recommended for carriers of a germline missense SMARCB1 variant, because that genotype tracks with schwannomatosis/Coffin-Siris rather than malignant RTPS1 risk (§4/§9 genotype-phenotype correlation) — this is a case where genotype, not just carrier status, should gate surveillance intensity in any curated definition/algorithm.
Differential diagnosis (key discriminators — same locus, different disease): - SMARCB1-related schwannomatosis — non-truncating (missense/hotspot) variants, adult-onset benign cranial/peripheral schwannomas and meningiomas, not RTPS1. Co-occurrence of schwannomatosis and RTPS1 in the same family has been reported (PMC6081224) but reflects distinct variant classes, not the same clinical entity. - Coffin-Siris syndrome (and the Coffin-Siris/Nicolaides-Baraitser intermediate phenotype) — developmental/dysmorphic syndrome from missense or in-frame SMARCB1 (or other BAF-complex-gene) variants, without rhabdoid tumor predisposition. - RTPS2 (SMARCA4) — allelic-locus counterpart; earlier onset, more aggressive, incomplete penetrance, additional SCCOHT risk. - Li-Fraumeni syndrome (TP53) — broader cancer spectrum; rare co-occurrence of TP53-mutant SMARCB1/SMARCA4-deficient tumors reported. - KBG syndrome (ANKRD11) — developmental/skeletal syndrome with a rare reported paratesticular rhabdoid tumor association. - BAP1 tumor predisposition syndrome, DICER1 tumor predisposition — distinguished by absence of clinical/family history of rhabdoid tumor specifically.
Screening for asymptomatic at-risk relatives: Molecular testing for the known familial SMARCB1 variant clarifies at-risk relative status; when neither parent tests positive, germline mosaicism remains a live possibility and does not exclude recurrence risk in future pregnancies. Prenatal testing and preimplantation genetic testing are available once a familial variant is identified; because RTPS1 tumors can arise prenatally, high-resolution prenatal ultrasound is recommended when a fetus is known to carry the familial variant (GeneReviews).
Survival: Overall 5-year survival for rhabdoid tumor generally is reported below 30% (PMC12062526), with RTPS1 (germline) cases carrying a worse prognosis than sporadic (non-germline) rhabdoid tumor, though long-term survivors are reported (GeneReviews, qualitative statement — exact RTPS1-vs-sporadic hazard ratio was not retrieved in this pass).
Landmark trial outcome data (ACNS0333, COG phase III/II, PMID:32105509, J Clin Oncol 2020): In 65 evaluable AT/RT patients treated with induction chemotherapy → 3 cycles of high-dose consolidation chemotherapy with stem-cell rescue (thiotepa, carboplatin) → focal 3D-conformal radiotherapy, 4-year event-free survival was 37% (95% CI 25–49%) and overall survival 43% (95% CI 31–55%) — a substantial improvement over historical POG9233/4 + CCG9921 cohorts, which achieved only 6.4% 24-month EFS. 91% of relapses occurred within 2 years of enrollment. Note this trial cohort mixes germline and non-germline AT/RT; it is not an RTPS1-exclusive outcome figure, and that distinction should be preserved in any KB citation.
Prognostic stratifiers reported: - Age at diagnosis and localized vs. metastatic/synchronous disease at presentation — localized disease receiving multimodal therapy achieves substantially better outcomes (~46.8% 5-year OS cited in PMC12062526) than synchronous/multifocal presentation. - Concurrent AT/RT plus extrarenal tumor: only ~13% overall survival despite aggressive therapy (PMC12062526) — the single worst-prognosis stratum identified in this pass. - Molecular subgroup within AT/RT specifically: ATRT-TYR (better OS) vs. ATRT-SHH (inferior OS, driven by metastatic risk) vs. ATRT-MYC (intermediate, distinguished more by drug sensitivity than baseline prognosis) — DNA-methylation subgrouping was reported to carry no additional prognostic significance within the ATRT-SHH subgroup specifically in a clinical-trial-cohort re-analysis (PMC10412479), a useful negative finding worth preserving rather than over-generalizing subgroup-prognosis claims. - SMARCA4 (RTPS2) vs. SMARCB1 (RTPS1) germline status: SMARCA4-mutated AT/RT is associated with younger age, higher germline mutation frequency, and inferior prognosis relative to SMARCB1-mutated cases — again, keep this as a RTPS1-vs-RTPS2 contrast, not folded into RTPS1's own outcome figures.
Complications: Intensive multimodal therapy (surgery + high-dose chemotherapy + radiotherapy) in infants carries a high rate of treatment-related secondary complications (GeneReviews, qualitative), motivating the "risk-reducing" strategy discussion in §12 (deferring/replacing radiotherapy, proton therapy, earlier targeted-agent use).
Standard multimodal chemoradiotherapy (COG regimen, ACNS0333): surgical resection + 2 cycles induction chemotherapy (cisplatin, cyclophosphamide, etoposide, vincristine, methotrexate) + 3 cycles high-dose consolidation chemotherapy with autologous stem-cell rescue (thiotepa, carboplatin) + focal 3D-conformal radiotherapy (pre- or post-consolidation) (PMID:32105509). Suggested NCIT terms: NCIT:C15632 (Chemotherapy), NCIT:C15313 (Radiation Therapy), NCIT:C15329 (Surgical Procedure); NCIT:C15431 or transplantation-specific term for stem-cell rescue.
Risk-reducing strategy discussion (RTPS1-specific consideration, per GeneReviews): given the very young age at diagnosis and secondary-malignancy/neurotoxicity risk of radiotherapy in infants, guidance explicitly raises postponing or replacing radiotherapy with high-dose chemotherapy or proton-beam therapy, and using targeted therapy concomitantly with or before standard chemotherapy — framed as an active area of clinical judgment rather than a settled protocol.
EZH2 inhibition (tazemetostat/Tazverik): Mechanistically rationalized by the unopposed-PRC2 branch of pathophysiology (§6, step 5). FDA granted accelerated approval in January 2020 for epithelioid sarcoma (age ≥16) and June 2020 for relapsed/refractory EZH2-mutant follicular lymphoma (neither indication is rhabdoid-tumor-specific). A dedicated pediatric trial in INI1(SMARCB1)-negative tumors (NCT02601937) enrolled dose-expansion cohorts of ~20 AT/RT and ~20 MRT/RTK/rhabdoid-feature patients; efficacy was limited — only a subset of intracranial AT/RT patients showed objective response, while extracranial rhabdoid tumors were essentially uniformly resistant. Important currency note for this KB entry: as of August 2026, Ipsen has voluntarily withdrawn the FDA indications for tazemetostat in follicular lymphoma and epithelioid sarcoma; I did not find confirmation in this pass of whether this withdrawal affects the separate pediatric INI1-negative-tumor development pathway specifically — flag as needing a fresh check before citing tazemetostat as an available agent, rather than asserting current availability.
Other emerging/investigational agents cited across sources (treat as investigational, not standard of care): HDAC inhibitors (vorinostat), CDK4/6 inhibitors (palbociclib, abemaciclib), PARP inhibitors, PD-1/PD-L1 checkpoint inhibitors, CAR-T cell approaches, and multi-targeted tyrosine kinase inhibitors (rationalized specifically for the ATRT-MYC subgroup's demonstrated in vitro sensitivity) and NOTCH inhibitors (rationalized for a subset of ATRT-SHH). None of these have RTPS1/AT/RT-specific regulatory approval based on sources reviewed here.
RTPS2-specific risk-reduction (contrast only, not RTPS1 content): prophylactic risk-reducing bilateral salpingo-oophorectomy after family planning is discussed for SMARCA4/RTPS2 carriers given SCCOHT risk — this does not apply to RTPS1/SMARCB1 carriers and should not be cross-applied.
Survivorship exposure guidance: limit DNA-damaging exposures (radiation including diagnostic CT, tobacco, UV, further chemotherapy) post-treatment to reduce secondary-malignancy risk in RTPS1 survivors (GeneReviews).
Primary prevention: Not applicable in the vaccination/exposure-avoidance sense — RTPS1 is a germline monogenic condition with no known modifiable environmental trigger.
Secondary prevention / early detection: The entire clinical-management apparatus for RTPS1 is essentially a secondary-prevention (early-detection) framework — see the structured surveillance protocol in §10, which functions as population-level early detection within the known-carrier population rather than population screening.
Genetic screening: Cascade testing of at-risk relatives once a familial SMARCB1 variant is identified; prenatal testing and preimplantation genetic testing available for known familial variants (§10). Newborn screening in the population-wide sense does not apply (RTPS1 is not on standard newborn metabolic/genetic screening panels; detection is via targeted familial cascade testing or diagnostic workup of an index tumor).
Genetic counseling: Central to management — clarifying at-risk relative status, explaining the up-to-50%-of-multiplex-families germline-mosaicism possibility when parental testing is negative, and coordinating prenatal/preimplantation options (§9, §10).
Tertiary prevention: Exposure-avoidance guidance in survivors to reduce secondary/therapy-related malignancy risk (§12).
No naturally occurring veterinary/companion-animal rhabdoid tumor or SMARCB1-deficient disease was identified in this search pass (I did not query OMIA directly; if this is needed for the KB's animal-models section, an OMIA-specific search should be run before asserting absence). All animal data retrieved in this pass are engineered laboratory models (below), not naturally occurring disease in another species.
Orthologous gene: Smarcb1 (mouse, MGI:1917258) is the standard ortholog used in modeling.
Mouse — conditional/tissue-specific Smarcb1 knockout: Neural-crest-specific Smarcb1 inactivation is sufficient to initiate rhabdoid-like tumorigenesis in cranial nerves and meninges, reproducing typical histologic and molecular features of human rhabdoid tumors (Vitte et al., Nat Commun 2017, PMID:28824165, "Timing of Smarcb1 and Nf2 inactivation determines schwannoma versus rhabdoid tumor development"). This study's central finding — directly relevant to the RTPS1/schwannomatosis distinction in §4/§9/§10 — is that the developmental timing of Smarcb1 loss (early vs. late in the neural-crest lineage), not just the variant class, determines whether the resulting tumor is a malignant rhabdoid tumor or a benign schwannoma; this nuances but does not replace the truncating-vs-missense genotype-phenotype rule as the dominant clinical predictor.
Broader validation: Smarcb1 has been functionally validated as a bona fide tumor suppressor in mouse models — germline/conditional Smarcb1 inactivation is reported to produce rapid, highly penetrant tumor development (cited generally across the SWI/SNF-mechanism literature retrieved in this pass). I was not able to independently pin an exact primary PMID for the foundational Smarcb1+/− mouse tumor-suppressor validation studies in this search pass (I recall this line of work, associated with the Roberts laboratory, from general background knowledge, but per your attribution standard I am not asserting an unverified PMID — this citation should be confirmed directly against PubMed before being written into a KB evidence block).
Model characteristics: The neural-crest-lineage conditional model recapitulates cranial-nerve/meningeal rhabdoid tumor histology and molecular profile with apparent high fidelity for that anatomic compartment; it does not, on the evidence retrieved here, establish an equally validated model for renal (RTK) or hepatic/extracranial rhabdoid tumor sites, which would need separate lineage-specific conditional models to claim the same fidelity — flag as a gap rather than assume generalization across all RTPS1 tumor sites.
Applications: These models are used to dissect (a) the SMARCB1-loss → SWI/SNF redistribution → oncogenic-transcription mechanism (§6), (b) the developmental-timing/cell-of-origin determinant of rhabdoid-tumor-vs-schwannoma phenotype, and (c) preclinical testing of EZH2 inhibitors and other targeted agents against the PRC2-unopposed mechanistic branch.
Resources: MGI (Smarcb1 mouse strains, conditional/floxed alleles); IMPC/KOMP for knockout allele availability — not independently queried in this pass.
Checked with linkml-reference-validator 0.2.1.
| Outcome | Count |
|---|---|
| References checked | 16 |
| Resolved | 16 |
| Unresolved (possible confabulation) | 0 |
| Unverifiable | 0 |
| References weighed for topical relevance | 16 |
| On topic | 13 |
| Off topic | 0 |
All extracted references resolved successfully.
Checked with linkml-term-validator 0.4.5, through the ols: adapter.
| Outcome | Count |
|---|---|
| Terms checked | 16 |
| Resolved | 13 |
| Unresolved (possible confabulation) | 0 |
| Obsolete | 1 |
| Unverifiable | 2 |
| Terms whose name was checked | 9 |
| Terms named correctly | 8 |
| Terms named as a different term | 0 |
| Terms whose name is worth a second look | 1 |
These terms are real but deprecated. Citing one is not a fabrication; it does mean the report is naming something the ontology has retired:
GO:0016569 (obsolete covalent chromatin modification) (1 mention)The report's name for these is recognisably related to the term's own name without being one of them. A loose paraphrase reads the same way as a citation of the wrong sibling term - and so does a related synonym, which the ontology records precisely because it names something adjacent rather than the same thing - so these are listed rather than judged:
GO:0016569 (1 mention) - the report calls it "covalent chromatin modification"; GO calls it obsolete covalent chromatin modificationTerms carrying these prefixes were not checked either way, because no configured ontology covers them. An unrecognised prefix may name an ontology this run could not reach as easily as one that does not exist, so nothing here is evidence of fabrication: MGI.
13 of 16 terms resolved to a current term; the rest could not be looked up either way.