Rhabdoid Tumor Predisposition Syndrome 2

Rhabdoid Tumor Predisposition Syndrome 2 (RTPS2) — Research Report

2026-08-31
Claude Code MONDO:0013224 Model: claude-haiku-4-5-20251001, claude-sonnet-5 22 citations Prompt: disease_pathophysiology_research.md 1e7ea4ee817a

Rhabdoid Tumor Predisposition Syndrome 2 (RTPS2) — Research Report

Scope note (lump/split): This report covers the germline cancer-predisposition syndrome RTPS2 (OMIM #613325), caused by heterozygous germline loss-of-function SMARCA4 variants. It deliberately separates RTPS2 from the somatic tumor types it predisposes to — small cell carcinoma of the ovary, hypercalcemic type (SCCOHT), atypical teratoid/rhabdoid tumor (AT/RT), and extracranial malignant rhabdoid tumor (eMRT) — and from a biallelic-somatic-only entity, SMARCA4-deficient thoracic sarcoma/NSCLC, which the literature explicitly excludes from the germline syndrome (no germline mutations reported; strongly smoking-associated) (Journal of Thoracic Oncology). It is also allelic to, but clinically distinct from, Coffin-Siris syndrome 4 (SMARCA4-related), a developmental disorder driven predominantly by missense/dominant-negative variants rather than truncating loss-of-function.


1. Disease Information

Identifiers: OMIM #613325 (RTPS2) (OMIM); MONDO:0013224; Gene: SMARCA4 (HGNC:11100), chr19p13.2, transcript NM_001128849.3 (36 exons per GeneReviews) / NM_003072.5 (ClinVar convention); Allelic locus OMIM 603254 (SMARCA4). GeneReviews chapter: "Rhabdoid Tumor Predisposition Syndrome" (covers both RTPS1/SMARCB1 and RTPS2/SMARCA4*) (NCBI Bookshelf NBK469816). NCI PDQ Genetics summary is split into RTPS1 and RTPS2 (PDQ RTPS2, NBK613400).

Overview: RTPS2 is an autosomal dominant cancer-predisposition syndrome caused by heterozygous germline loss-of-function variants in SMARCA4, encoding BRG1, the mutually-exclusive catalytic ATPase subunit of the BAF (SWI/SNF) chromatin-remodeling complex. It is the minor genetic subtype of rhabdoid tumor predisposition syndrome, accounting for roughly 5–15% of germline-confirmed RTPS cases against 85–95% for RTPS1/SMARCB1 (GeneReviews); in the EU-RHAB registry's 90 germline-confirmed cases, 6 carried SMARCA4 variants (~6.7%) (PDQ RTPS2). Unlike RTPS1, RTPS2 shows incomplete penetrance and a distinct associated tumor spectrum dominated by SCCOHT rather than infantile AT/RT/eMRT.

Synonyms: BRG1-related rhabdoid tumor predisposition; familial rhabdoid tumor (SMARCA4-related).

Evidence base: Predominantly aggregated disease-level resources — GeneReviews, OMIM, PDQ, ClinGen — built from case series and registries (EU-RHAB), not large-scale EHR cohorts, reflecting the rarity of the condition.


2. Etiology

Causal factor: Heterozygous germline loss-of-function SMARCA4 variants (nonsense, frameshift, canonical splice-site, whole/partial gene deletion) predisposing to tumors that arise on somatic biallelic inactivation (loss of the wild-type allele or a second somatic truncating hit) — the discovery family (2 German sisters, early-onset fatal rhabdoid tumors) carried germline p.Arg1189 with tumor-restricted somatic second-hit inactivation (Schneppenheim et al. 2010, Am J Hum Genet* 86:279–284, PMID:20137775).

Genetic risk factors: The germline variant itself is the dominant risk factor. No common susceptibility loci or modifier-gene data specific to RTPS2 were identified in this search; modifier genetics are essentially uncharacterized for this rare syndrome. Variant type (truncating vs. missense) is the key genotype-phenotype determinant separating RTPS2/cancer risk from Coffin-Siris syndrome 4 (missense, dominant-negative) — "truncating mutations in the SMARCA4 gene typically lead to rhabdoid tumor predisposition syndrome (RTPS), whereas missense mutations are typically associated with Coffin-Siris syndrome," though this is not an absolute rule, as haploinsufficient missense/splice alleles can also cause milder CSS phenotypes (PMC5601212, PMC10897839-adjacent literature).

Environmental/lifestyle factors: None established for the germline syndrome. This is explicitly distinguished from the biallelic-somatic SMARCA4-deficient thoracic sarcoma/NSCLC entity, which is strongly smoking-associated (85.7% smokers, 98.1% male, median age 48) and carries no reported germline mutations (JTO 2019/2020 series, PMC10875988) — this is a mechanistically related but etiologically separate somatic cancer, not a manifestation of RTPS2.

Gene-environment interaction: No data identified specific to RTPS2.


3. Phenotypes

RTPS2 itself is a cancer-predisposition state; the "phenotype" is chiefly tumor occurrence, though pediatric framing matters because age of onset differs sharply by tumor type:

Table (click to expand)
Tumor / finding HPO suggestion Onset Notes / citation
SCCOHT HP:0100615 (Ovarian neoplasm) / consider a more specific rhabdoid-tumor term if curating Adolescent–young adult; median 23.9 y (range infancy–56 y) Most characteristic RTPS2 tumor in females (GeneReviews; PDQ RTPS2)
Paraneoplastic hypercalcemia HP:0003072 (Hypercalcemia) Concurrent with SCCOHT Present in up to two-thirds of SCCOHT cases (search synthesis of SCCOHT literature)
AT/RT HP:0030692 or a rhabdoid-tumor-specific term Younger age than SMARCB1-AT/RT reported for SMARCA4-mutant cases Rare in RTPS2 vs. RTPS1; molecularly distinct subgroup (Acta Neuropathol 2020)
Extracranial malignant rhabdoid tumor (eMRT) Variable Sites: head/neck, paravertebral muscles, liver, bladder, mediastinum, retroperitoneum, pelvis, heart (GeneReviews)
SMARCA4-deficient undifferentiated uterine sarcoma Adult Allelic with SCCOHT in some kindreds (GeneReviews; ScienceDirect Gynecol Oncol 2019 family study)
Neuroblastoma HP:0009830-adjacent (neural crest tumor) Pediatric 11 documented cases with germline SMARCA4 variants (PDQ RTPS2)

Severity/progression: All associated malignancies (SCCOHT, AT/RT, eMRT) are aggressive, high-grade, rapidly progressive tumors requiring urgent multimodal treatment.

Quality of life: Not separately characterized for RTPS2; dominated by the morbidity/mortality of the associated malignancies and, in survivors, the burden of intensive multimodal therapy and lifelong surveillance imaging (see §8, §13).


4. Genetic/Molecular Information

Causal gene: SMARCA4 / HGNC:11100 / OMIM *603254, chr19p13.2. Protein: SMARCA4/BRG1, catalytic ATPase subunit of the BAF (SWI/SNF) complex, mutually exclusive with its paralog SMARCA2 (BRM) within complex assembly.

Variant spectrum: GeneReviews: "Reported disease-causing variants include nonsense and splice site variants and intragenic deletions that predict inactivation." Sequence analysis detects a substantial fraction of cases and gene-targeted deletion/duplication analysis is required for the remainder (GeneReviews cites illustrative yields of 4/9 vs 5/9 in a small series, underscoring that both testing modalities are needed).

Somatic second hit: Tumor tissue in RTPS2 carriers shows biallelic inactivation via a somatic truncating mutation and/or loss of the wild-type allele in addition to the germline variant — directly demonstrated in the founding family (Schneppenheim 2010, PMID:20137775) and in SCCOHT cohorts, where immunohistochemical loss of nuclear SMARCA4/BRG1 staining was found in 38/40 tumors overall (Witkowski et al. 2014, Nat Genet 46:438–443, PMID:24658002). A companion paper, Ramos et al. 2014, PMID:24658001, independently reported frequent inactivating germline and somatic SMARCA4 mutations in SCCOHT.

Functional consequence: Loss of function / haploinsufficiency. "SMARCA4 acts as a haploinsufficient tumor suppressor" with roughly half-normal protein dosage in heterozygous-mutant cells sufficing to produce phenotype in the developmental (Coffin-Siris) context, consistent with a dosage-sensitive gene (PMC5601212). It is strongly loss-of-function-constrained in population data (high pLI/low LOEUF category genes of this class), consistent with its essential developmental role (see §6, embryonic lethality data), though this search did not return the exact gnomAD pLI value.

Allelic disorders: - RTPS1 — SMARCB1, OMIM #609322 (>85% of RTPS; near-complete, early penetrance; mostly de novo). - Coffin-Siris syndrome 4 — SMARCA4, developmental disorder (missense/dominant-negative, not typically truncating); no established rhabdoid-tumor risk, but overlap cases exist (see below). - SMARCA4-related developmental eye anomalies — an emerging phenotypic extension of the SMARCA4 loss-of-function spectrum (Chesneau et al. 2026, Clin Genet, 10.1111/cge.70143). - A documented overlap kindred shows a single inactivating SMARCA4 variant causing concomitant Coffin-Siris phenotype, microphthalmia, AND SCCOHT in different family members — evidence that the CSS/cancer-risk boundary is not absolute at the genotype level (PMC5601212).

Epigenetics: SWI/SNF (BAF) loss produces genome-wide chromatin remodeling: collapse of enhancer accessibility at differentiation/developmental loci coupled with gain of accessibility/activity at pro-tumorigenic enhancers — described as a "two-step" enhancer dysregulation process in rhabdoid tumor biology (PMC10931202). AT/RT with SMARCA4 mutation shows a distinct DNA methylation/transcriptomic signature from SMARCB1-deficient AT/RT, supporting classification as a separate molecular subgroup (Acta Neuropathologica 2020, 10.1007/s00401-020-02250-7).

Chromosomal abnormalities: Intragenic deletions are a recognized mechanism (detected by deletion/duplication analysis); large-scale aneuploidy is not a defining feature of the germline syndrome itself (as opposed to somatic tumor genomes, which are often otherwise "quiet"/low-mutation-burden, characteristic of rhabdoid tumors generally).


5. Environmental Information

No established environmental, lifestyle, or infectious contributing factor for RTPS2 germline predisposition. As noted in §2, smoking is strongly associated with the mechanistically related but etiologically distinct somatic-only SMARCA4-deficient thoracic sarcoma/NSCLC entity — this should not be conflated with RTPS2 cancer risk.


6. Mechanism / Pathophysiology

Causal chain (numbered, germline pathway):

  1. A heterozygous germline loss-of-function SMARCA4 variant (nonsense, frameshift, splice-site, or intragenic deletion) is inherited or arises de novo, reducing functional BRG1/SMARCA4 ATPase dosage in all cells (demonstrated: Schneppenheim 2010, PMID:20137775).
  2. In a susceptible tissue (ovarian/genital ridge lineage for SCCOHT; neural/renal/soft-tissue progenitors for AT/RT and eMRT), a somatic second hit — truncating mutation or loss of the remaining wild-type allele — leads to biallelic SMARCA4 inactivation and loss of BAF-complex ATPase activity, demonstrated by IHC loss of nuclear SMARCA4/BRG1 staining in tumor tissue (38/40 tumors in Witkowski et al. 2014, PMID:24658002).
  3. Loss of the BAF ATPase leads to genome-wide redistribution of chromatin accessibility: collapse of enhancers driving lineage-differentiation programs and gain of accessibility/activity at enhancers driving proliferative, pro-tumorigenic transcriptional programs — this enhancer-dysregulation step is inferred primarily from SMARCB1-null rhabdoid tumor models and extrapolated to SMARCA4-null tumors, which show a related but molecularly distinguishable epigenomic signature (PMC10931202; Acta Neuropathologica 2020).
  4. Loss of BAF-complex antagonism of Polycomb Repressive Complex 2 (PRC2) results in unopposed EZH2-mediated H3K27 trimethylation, silencing residual tumor-suppressor/differentiation loci — this creates an oncogenic dependency on EZH2 itself ("BAF-PRC2 balance" model), which is the mechanistic basis for EZH2-inhibitor efficacy in these tumors (Mol Cancer Ther 2017, doi:10.1158/1535-7163.mct-16-0678).
  5. Downstream of BAF-complex dysfunction, SMARCA4-determined loss of cyclin D1 expression creates a druggable dependency on CDK4/6 for cell-cycle progression in SCCOHT (Xue et al. 2019, Nat Commun, 10.1038/s41467-018-06958-9) — a parallel downstream branch from the same initiating chromatin lesion.
  6. The resulting dysregulated transcriptional program (interacting with p16-Rb, Wnt/β-catenin, sonic hedgehog, Polycomb, MYC, and Aurora-A pathways per GeneReviews) drives loss of differentiation and unchecked proliferation, culminating clinically in aggressive, undifferentiated, high-grade malignancy — SCCOHT, AT/RT, or eMRT depending on the tissue of the somatic second hit.

Molecular pathways: BAF/SWI/SNF chromatin remodeling; PRC2/EZH2 (antagonistic partner complex); cyclin D1–CDK4/6 cell-cycle axis; Wnt/β-catenin; sonic hedgehog; p16-Rb; MYC; Aurora-A (GeneReviews summary of SWI/SNF pathway interactions).

Cellular processes: Loss of cellular differentiation programs, epigenetic silencing of tumor-suppressor loci, cell-cycle dysregulation via cyclin D1 deficiency, super-enhancer hijacking of oncogenic programs.

Protein dysfunction: Complete or near-complete loss of BRG1/SMARCA4 nuclear protein expression in tumor tissue (loss-of-function via truncation/degradation), used diagnostically by IHC (GeneReviews; §10).

Suggested GO terms: GO:0006338 (chromatin remodeling), GO:0016514 (SWI/SNF complex), GO:0031065 (positive regulation of histone deacetylation — for PRC2/EZH2 crosstalk context), GO:0000122 (negative regulation of transcription by RNA polymerase II). Suggested CL terms depend on tumor type: for SCCOHT, cell-of-origin remains debated (possible germ-cell origin, noted in the PDQ fertility-counseling discussion); for AT/RT/eMRT, primitive neuroectodermal/mesenchymal progenitor populations are implicated but not resolved to a single CL term in this search.

Molecular profiling: DNA methylation and transcriptomic profiling distinguish SMARCA4-mutant AT/RT as a separate molecular subgroup from SMARCB1-mutant AT/RT (Acta Neuropathologica 2020). Rhabdoid tumors generally (including SMARCA4-driven cases) are characterized by an otherwise remarkably low somatic mutation burden outside the driver SWI/SNF-gene event — a hallmark supporting a "pure epigenetic driver" oncogenesis model, though this specific point was not independently re-verified with a fresh citation in this search pass.


7. Anatomical Structures Affected

  • Organ level: Ovary (SCCOHT — most characteristic RTPS2 manifestation); uterus (SMARCA4-deficient undifferentiated uterine sarcoma); CNS (AT/RT, less common in RTPS2 than RTPS1); and extracranial soft tissue/visceral sites for eMRT — head and neck, paravertebral muscles, liver, urinary bladder, mediastinum, retroperitoneum, pelvis, and heart (GeneReviews). Adrenal/sympathetic chain involvement occurs via the neuroblastoma association (PDQ RTPS2).
  • Body systems: Reproductive (ovary/uterus), central nervous system, musculoskeletal/soft tissue, hepatobiliary, genitourinary, cardiac.
  • Tissue/cell level: Undifferentiated/rhabdoid morphology tumor cells characterize all associated malignancies; loss of SMARCA4/BRG1 nuclear expression is the shared immunohistochemical signature (GeneReviews; Witkowski 2014).
  • Subcellular level: Nuclear — the BAF/SWI/SNF complex operates on chromatin within the nucleus; GO Cellular Component GO:0016514 (SWI/SNF complex) and GO:0005654 (nucleoplasm) are relevant.
  • Localization: SCCOHT frequently bilateral in reported cases (e.g., a bilateral case in a teenager with germline SMARCA4 mutation, PMID:26230154); eMRT sites are typically unilateral/focal at presentation but with a marked propensity for synchronous/metachronous multifocal tumors in RTPS generally.

8. Temporal Development

Onset (RTPS2-specific, contrasted with RTPS1): RTPS2-associated malignancies show a markedly different age distribution from RTPS1. SCCOHT typically presents in adolescence/young adulthood (median 23.9 years, range infancy to 56 years) rather than infancy (PDQ RTPS2, sourced from Slovenia-cohort epidemiology). This stands in contrast to the classic RTPS statistic that >70% of RTPS overall (dominated by RTPS1/SMARCB1 cases) present before 12 months of age (GeneReviews) — a statistic that should not be mechanically applied to RTPS2, where AT/RT and SCCOHT onset skews later, though SMARCA4-mutant AT/RT is still reported at "younger age" than SMARCB1-mutant AT/RT within the AT/RT subgroup specifically (search synthesis of AT/RT literature).

Progression: All associated tumors are rapidly progressive and high-grade at diagnosis. SCCOHT is FIGO-staged; overall survival is 51% for FIGO stage I versus 24% for stage II–IV (PDQ RTPS2), reflecting a steep stage-dependent prognosis gradient typical of an aggressive undifferentiated malignancy.

Course pattern: Not relapsing-remitting — these are acute, aggressive primary malignancies requiring immediate multimodal intervention; recurrence/relapse (rather than remission-relapse cycling) is the dominant late-course concern.

Critical periods: The lifelong surveillance protocol (GeneReviews; §13) is stratified precisely around age-dependent risk windows: intensive imaging in the first 5 years of life (when AT/RT/eMRT risk, inherited from the wider RTPS spectrum, is highest even in SMARCA4 carriers) transitioning to lifelong biannual pelvic/abdominal ultrasound after puberty for SCCOHT surveillance in female carriers.


9. Inheritance and Population

Inheritance pattern: Autosomal dominant, SMARCA4, 19p13.2 (OMIM #613325).

Penetrance: Incomplete — the defining genetic-counseling contrast with RTPS1. In the founding kindred, the father was an unaffected heterozygous carrier of the same germline truncating variant (R1189X = p.Arg1189*) transmitted to his affected daughters (Schneppenheim et al. 2010, PMID:20137775). GeneReviews states that most individuals with SMARCA4-related RTPS "inherited a disease-causing variant from a parent without a history of a rhabdoid tumor or SCCOHT" — the inverse of the RTPS1 pattern, where variants are typically de novo with near-complete penetrance by age 5.

Epidemiology: - SMARCA4 accounts for ~5–15% of germline-confirmed RTPS overall (GeneReviews); EU-RHAB registry: 6/90 germline-confirmed RTPS cases (~6.7%) (PDQ RTPS2). - Up to 40–43% of SCCOHT cases (a rare, mostly-sporadic ovarian cancer) carry a germline SMARCA4 variant, i.e., represent RTPS2 rather than isolated somatic disease (search synthesis; PDQ RTPS2 gives ~40%). - SCCOHT incidence estimated at 0.12 per million per year (Slovenia national data, PDQ RTPS2) — reflecting the extreme rarity of both the tumor and the underlying syndrome. - SMARCA4 mutations (germline + somatic combined) account for up to ~2% of AT/RT overall (search synthesis of AT/RT literature); up to 35% of rhabdoid tumors broadly (SMARCB1 + SMARCA4 combined) carry a germline mutation, associated with younger age and worse prognosis regardless of which gene is affected. - AT/RT overall incidence: 1.4 per million (Germany), 1–3% of pediatric CNS tumors (search synthesis).

Population/demographic data: No ethnicity-specific founder effect, consanguinity association, or geographic clustering was identified for SMARCA4-RTPS2 in this search (contrast with some other pediatric cancer syndromes). Sex distribution is inherently skewed toward the tumor type: SCCOHT is female-exclusive by organ (ovary); AT/RT/eMRT occur in both sexes.

Mosaicism: GeneReviews notes reduced but nonzero risk to sibs of an affected proband whose parents test negative, attributable to possible germline mosaicism, "though less common than in SMARCB1 families" — i.e., germline mosaicism is a recognized but less prominent mechanism in RTPS2 than RTPS1.


10. Diagnostics

Diagnostic criteria (GeneReviews): RTPS2 diagnosis is established by identification of a heterozygous germline loss-of-function SMARCA4 variant by molecular testing, in the context of an SMARCA4-deficient tumor and/or a family history of rhabdoid tumor/SCCOHT/multiple SMARCA4-deficient tumors.

Germline testing recommended when: an SMARCA4-deficient tumor is found with either a family history of rhabdoid tumor OR a family history of nonspecific early-childhood (age <5 years) cancer (GeneReviews).

Molecular methods: Sequence analysis of SMARCA4 plus gene-targeted deletion/duplication analysis (both required — GeneReviews' illustrative small-series yields of 4/9 vs 5/9 detections by each method show neither modality alone is sufficient).

Tumor-tissue IHC: Loss of nuclear SMARCA4 (BRG1) staining is a key diagnostic adjunct for SMARCA4-deficient tumors — distinguished from the SMARCB1 (INI1) immunostain used for RTPS1-associated tumors; rare tumors retain SMARCB1 (INI1) but lose SMARCA4 (BRG1), confirming the second, molecularly distinct rhabdoid-tumor driver pathway (PMID:21566516, "Nonsense mutation and inactivation of SMARCA4 (BRG1) in an atypical teratoid/rhabdoid tumor showing retained SMARCB1 (INI1) expression").

Imaging: Ultrasound (abdominal, pelvic, neck) and MRI (brain/spine, whole-body) are the primary surveillance and diagnostic-workup imaging modalities (§13).

Differential diagnosis (GeneReviews): - RTPS1 (SMARCB1) — the majority genetic subtype, distinguished by gene and by near-complete early penetrance. - Li-Fraumeni syndrome (TP53) — SMARCB1/SMARCA4-deficient malignant brain tumors can occur with complex copy-number alterations and germline TP53 variants, a described mimicker/overlap scenario. - KBG syndrome (ANKRD11) — includes paratesticular rhabdoid tumor as a recognized association. - BAP1 tumor predisposition syndrome — associated with rhabdoid-subtype high-grade meningioma. - DICER1 tumor predisposition — risk of embryonal rhabdomyosarcoma, a histologic mimic.

Screening/carrier testing: Once a familial variant is identified, prenatal testing and preimplantation genetic testing are stated as technically possible (GeneReviews), though this is presented alongside — not in place of — genetic counseling given incomplete penetrance.


11. Outcome/Prognosis

SCCOHT: Overall survival 51% for FIGO stage I disease, dropping to 24% for stage II–IV (PDQ RTPS2) — among the most aggressive gynecologic malignancies in young women, historically associated with median survival well under two years in advanced-stage disease (general SCCOHT literature synthesis; specific historical median-survival figure not independently re-verified with a fresh PMID in this pass and should be sourced directly before KB entry if a precise number is needed).

AT/RT: SMARCA4-mutant AT/RT is associated with "younger age and an inferior prognosis in comparison to SMARCB1 mutated cases" (search synthesis of AT/RT molecular-subgroup literature, Acta Neuropathologica 2020 and related). Germline-mutated rhabdoid tumors broadly (either gene) carry a worse prognosis than somatic-only cases (search synthesis).

Prognostic factors: Tumor stage (SCCOHT FIGO stage), age at diagnosis (younger = worse for AT/RT), germline vs. somatic-only status (germline = worse), and DNA methylation subgroup (an independent predictor of AT/RT overall survival per EU-RHAB registry data, Frühwald et al., cited in PMC9100752/related EU-RHAB literature).

Complications: Paraneoplastic hypercalcemia is a recognized SCCOHT complication requiring independent management. Long-term morbidity in survivors reflects intensive multimodal therapy (surgical, chemotherapeutic, and in some protocols radiotherapeutic) exposure at a young age.


12. Treatment

General approach: Intensive multimodal therapy combining surgery, chemotherapy, and (in appropriate cases) radiotherapy is standard for RTPS2-associated malignancies (GeneReviews). NCIT: NCI Thesaurus term suggestions — NCIT:C15329 (Surgical Procedure), NCIT:C15632 (Chemotherapy), NCIT:C15313 (Radiation Therapy).

SCCOHT-specific: Aggressive cytoreductive surgery (including bilateral salpingo-oophorectomy where appropriate) combined with high-dose alkylator-based chemotherapy regimens, in some protocols with autologous stem cell rescue (general SCCOHT treatment literature synthesis).

Targeted/precision approaches — EZH2 inhibition (tazemetostat): - Mechanistic rationale: BAF-complex loss creates an oncogenic dependency on the antagonist PRC2/EZH2 complex; tazemetostat is a selective, oral EZH2 inhibitor with preclinical activity in both INI1(SMARCB1)-negative and SMARCA4-negative models (Mol Cancer Ther 2017, doi:10.1158/1535-7163.mct-16-0678; Mol Cancer Ther 2018 HDAC-EZH2 synergy paper). - Adult phase 2 trial (NCT02601950): tazemetostat 800 mg BID in adults with INI1-negative malignant rhabdoid tumors, confirmed by histology and IHC. - Pediatric MATCH trial (NCT03213665 / APEC1621C): tazemetostat in pediatric patients with tumors harboring EZH2 alterations or loss of SMARCB1/SMARCA4; 20 patients enrolled (median age 5 y), predominantly AT/RT (n=8) and malignant rhabdoid tumor (n=4); 6-month PFS 35%, 6-month OS 45% (Mayo Clinic/JNCI publication, APEC1621C results). - Combination trial (NCT05407441 / Dana-Farber "TAZNI"): Phase I/II tazemetostat + nivolumab + ipilimumab for children with SMARCB1- or SMARCA4-deficient tumors (malignant rhabdoid tumor, AT/RT, epithelioid sarcoma, chordoma).

CDK4/6 inhibition: SMARCA4-determined cyclin D1 deficiency creates a druggable dependency on CDK4/6 in SCCOHT, providing a distinct targeted-therapy rationale from EZH2 inhibition (Xue et al. 2019, Nat Commun, 10.1038/s41467-018-06958-9); NCIT drug-class suggestion for this modality is not standardized in this search and would need per-agent NCIT lookup (e.g., palbociclib/ribociclib class terms).

HDAC inhibitor combination: HDAC inhibitors synergize with EZH2 catalytic inhibitors to enhance antitumor activity in SCCOHT preclinical models (Mol Cancer Ther 2018, aacrjournals.org/mct/article/17/12/2767).

Fertility considerations: Egg/ovarian tissue banking may be considered before risk-reducing surgery, though the possible germ-cell origin of SCCOHT introduces uncertainty into the safety of this approach in mutation carriers (PDQ RTPS2 discussion).

Immunotherapy: Checkpoint-inhibitor combinations (nivolumab/ipilimumab) are being trialed in combination with EZH2 inhibition rather than as monotherapy in this tumor class (NCT05407441).


13. Prevention

Risk-reducing surgery: Prophylactic risk-reducing bilateral salpingo-oophorectomy "may be discussed following the end of family planning" in women with confirmed SMARCA4-related RTPS2, given the high lifetime risk of SCCOHT — GeneReviews explicitly frames this as requiring an interdisciplinary approach with genetic counseling given medical and ethical complexity (not a blanket recommendation).

Surveillance protocol (GeneReviews, RTPS2-specific, age-stratified): - Birth–6 months: monthly clinical exam; abdominal and neck ultrasound; head ultrasound or brain/spine MRI. - 7–18 months: every 2–3 months, clinical/neurologic exam plus abdominal/neck ultrasound. - 19 months–5 years: every 3 months, clinical exam, ultrasound, and brain/spine MRI. - After age 5 years: clinical exam every 6 months; annual whole-body MRI. - Females specifically: abdominal and pelvic ultrasound every 6 months, continuing lifelong, for SCCOHT surveillance.

(The PDQ summary independently corroborates a broadly similar schedule: craniospinal imaging every 4–6 weeks initially then quarterly for children under 5, quarterly clinical exam/abdominal ultrasound to age 5, and lifelong 6-monthly pelvic/abdominal ultrasound in females.)

Genetic counseling: Recommended for any individual/family with a personal or family history of SCCOHT or rhabdoid tumor; cascade testing of at-risk relatives is recommended once a familial variant is identified (PDQ RTPS2). Because penetrance is incomplete and many carriers are asymptomatic parents, counseling framing differs materially from RTPS1 — carrier identification does not imply near-certain future disease, but does trigger the surveillance protocol above.

Prenatal/preimplantation options: Technically available once the familial variant is known (GeneReviews), to be discussed within formal genetic counseling given incomplete penetrance.


14. Other Species / Natural Disease

No naturally occurring companion-animal or wildlife rhabdoid tumor syndrome specifically attributed to SMARCA4 germline loss was identified in this search (contrast with some other pediatric cancer-predisposition genes that have recognized veterinary correlates). The SMARCA4 gene itself is broadly conserved across mammals (orthologous to mouse Smarca4/Brg1; NCBI Gene), which underpins its use in mouse modeling (§15) rather than natural veterinary disease.


15. Model Organisms

Mouse — germline null: Smarca4/Brg1-null mice die during the peri-implantation stage; blastocyst outgrowth studies show neither the inner cell mass nor trophectoderm survives, and Brg1 is required for Cdx2-mediated repression of Oct4 in blastocysts, with knockout leading to ectopic pluripotency-factor expression and failure of both trophectoderm and ICM outgrowth (Bultman et al., "A Brg1 null mutation in the mouse reveals functional differences among mammalian SWI/SNF complexes," PMID:11163203; PMC2868905). This establishes Smarca4 as essential for pre-implantation development, consistent with it being a haploinsufficient dosage-sensitive gene in humans (§4).

Mouse — heterozygous/conditional models: BRG1 (heterozygous or lineage-conditional loss) protects against ovarian cysts, uterine tumors, and mammary tumors "in a lineage-specific manner," directly modeling the reproductive-tract tumor spectrum relevant to SCCOHT/uterine sarcoma (PMC3283619). Tissue-specific conditional Smarca4-knockout approaches (e.g., P0-Cre::Smarca4^fl/fl targeting neural crest lineages, paralleling the Smarcb1/Nf2 conditional strategy used to dissect schwannoma vs. rhabdoid tumor origin, PMC5563506) are used to probe cell-of-origin and tumor-type specificity, and show phenotypic changes (body weight, clinical symptoms) in the affected lineage.

Newer transgenic models: A newly generated transgenic SMARCA4-deficient mouse model produces prominent neuromuscular weakness and limb paralysis rather than a clean rhabdoid-tumor phenocopy (PMID:36582072) — an important model-fidelity caveat: this line highlights that global or broadly-targeted Smarca4 loss in mice produces severe non-oncogenic phenotypes (neuromuscular) that can complicate its use as a clean tumor model, distinct from the human RTPS2 presentation; tissue-restricted conditional approaches remain necessary to isolate tumor phenotypes from confounding developmental/neuromuscular toxicity.

In vitro models: The SCCOHT cell line BIN-67 (dual SMARCA2/SMARCA4-null) is the principal cell-based model used to establish the EZH2 synthetic-lethality and CDK4/6-dependency findings described in §6 and §12 (Mol Cancer Ther 2017; Nat Commun 2019).

Model limitations: No model discussed in this search fully recapitulates the incomplete-penetrance, later-onset (adolescent/adult), SCCOHT-predominant human RTPS2 phenotype — mouse germline nulls are embryonic lethal, and conditional/heterozygous models to date better capture reproductive-tract tumor susceptibility (ovarian/uterine/mammary) or neuromuscular toxicity than they do a clean, penetrance-matched SCCOHT or AT/RT phenocopy.


Summary of Key Citations

Table (click to expand)
Claim Citation
RTPS2 discovery, R1189X, reduced penetrance Schneppenheim et al. 2010, Am J Hum Genet 86:279–284, PMID:20137775
Germline/somatic SMARCA4 in SCCOHT Witkowski et al. 2014, Nat Genet 46:438–443, PMID:24658002
Frequent inactivating germline+somatic SMARCA4 in SCCOHT Ramos et al. 2014, PMID:24658001
GeneReviews chapter (RTPS1+RTPS2) NBK469816
PDQ RTPS2 summary NBK613400
OMIM #613325 omim.org/entry/613325
AT/RT SMARCA4 molecular subgroup Acta Neuropathologica 2020, 10.1007/s00401-020-02250-7
EZH2 synthetic lethality in SMARCA4-deficient SCCOHT Mol Cancer Ther 2017, 10.1158/1535-7163.mct-16-0678
CDK4/6 dependency via cyclin D1 loss Nat Commun 2019, 10.1038/s41467-018-06958-9
Pediatric MATCH tazemetostat (APEC1621C) NCT03213665, JNCI 2023
SMARCA4-deficient thoracic sarcoma/NSCLC as smoking-related, non-germline entity J Thorac Oncol 2019/2020, PMC10875988
Smarca4/Brg1 germline-null peri-implantation lethality Bultman et al., PMID:11163203
Coffin-Siris/SCCOHT overlap kindred PMC5601212

Gaps flagged for curator follow-up rather than filled by inference: exact gnomAD pLI/LOEUF value for SMARCA4; a directly-sourced historical median-survival figure for advanced SCCOHT (only stage-stratified OS percentages were retrieved); a specific CL ontology term for SCCOHT/AT/RT cell-of-origin (genuinely unresolved in the primary literature, not merely unsearched); and any zebrafish or Drosophila Smarca4-ortholog rhabdoid-tumor model (none surfaced in this search pass).

Reference Validation

Checked with linkml-reference-validator 0.2.1.

Table (click to expand)
Outcome Count
References checked 18
Resolved 18
Unresolved (possible confabulation) 0
Unverifiable 0
References weighed for topical relevance 18
On topic 13
Off topic 1

References that may not be about this subject

These identifiers resolve, so they are not fabrications, but the records they resolve to share almost none of this report's vocabulary. That is a clue and not a verdict - a paper can be relevant in ways its title and abstract do not spell out - so read them before deciding:

  • PMC:PMC2868905 (3 mentions) - Brg1 is required for Cdx2-mediated repression of Oct4 expression in mouse blastocysts.
  • shared terms: brg1, gene

Weighed against this report's own most characteristic terms: tumor, rtps2, smarca4, sccoht, germline, rhabdoid, pdq, variant, loss, rtps1, mutation, smarca4-deficient, associated, brg1, smarcb1, age, gene, cancer, syndrome, distinct.

All extracted references resolved successfully. Resolving is not the same as being relevant, though - see the references listed above as possibly off topic.

Term Validation

Checked with linkml-term-validator 0.4.5, through the ols: adapter.

Table (click to expand)
Outcome Count
Terms checked 14
Resolved 12
Unresolved (possible confabulation) 0
Obsolete 1
Unverifiable 1
Terms whose name was checked 10
Terms named correctly 9
Terms named as a different term 0
Terms whose name is worth a second look 1

Obsolete terms

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:0031065 (obsolete positive regulation of histone deacetylation) (1 mention)

Terms whose name is worth a second look

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:0031065 (1 mention) - the report calls it "positive regulation of histone deacetylation — for PRC2/EZH2 crosstalk context"; GO calls it obsolete positive regulation of histone deacetylation

12 of 14 terms resolved to a current term; the rest could not be looked up either way.