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Updated: Oct 17, 2025

An Integrated Platform for Genome-wide Mapping of Chromatin States Using High-throughput ChIP-sequencing in Tumor Tissues
Published on: April 5, 2018
SMARCA4: Implications of an Altered Chromatin-Remodeling Gene for Cancer Development and Therapy
Kristina Mardinian1, Jacob J Adashek2, Gregory P Botta1
1Center for Personalized Cancer Therapy, University of California San Diego, Moores Cancer Center, La Jolla, California.
Abstract:
The SWI/SNF chromatin remodeling complex, via nucleosome topology modulation, regulates transcription. The SMARCA4 (BRG1) subunit codes for the ATPase energy engine of the SWI/SNF complex. SMARCA4 is a tumor suppressor that is aberrant in ∼5% to 7% of human malignancies. Class I SMARCA4 alterations (truncating mutations, fusions, and homozygous deletion) lead to loss of function whereas class II alterations (missense mutations) have a dominant negative/gain-of-function effect and/or loss-of function. SMARCA4 alterations typify the ultra-rare small cell carcinomas of the ovary hypercalcemic type (SCCOHT) and SMARCA4-deficient thoracic and uterine sarcomas; they are also found in a subset of more common tumors, for example, lung, colon, bladder, and breast carcinomas. Germline variants in the SMARCA4 gene lead to various hereditary conditions: rhabdoid tumor predisposition syndrome-2 (RTPS2), characterized by loss-of-function alterations and aggressive rhabdoid tumors presenting in infants and young children; and Coffin-Siris syndrome, characterized by dominant negative/gain-of function alterations and developmental delays, microcephaly, unique facies, and hypoplastic nails of the fifth fingers or toes. A minority of rhabdoid tumors have a germline SMARCA4 variant as do >40% of women with SCCOHT. Importantly, immune checkpoint blockade has shown remarkable, albeit anecdotal, responses in SCCOHT. In addition, there is ongoing research into BET, EZH2, HDAC, CDK4/6, and FGFR inhibitors, as well as agents that might induce synthetic lethality via DNA damage repair impairment (ATR inhibitors and platinum chemotherapy), or via the exploitation of mitochondrial oxidative phosphorylation inhibitors or AURKA inhibitors, in SMARCA4-aberrant cancers.
Insights
SMARCA4 alterations drive various cancers and hereditary syndromes. Research explores targeted therapies like immune checkpoint blockade and inhibitors for SMARCA4-deficient tumors.
Area of Science:
- Cellular Biology
- Genetics
- Oncology
Background:
- The SWI/SNF complex, including the SMARCA4 (BRG1) subunit, regulates transcription through nucleosome remodeling.
- SMARCA4 acts as a tumor suppressor, with its alterations found in 5-7% of human cancers.
- SMARCA4 alterations are classified into Class I (loss-of-function) and Class II (dominant-negative/gain-of-function).
Purpose of the Study:
- To summarize the role of SMARCA4 alterations in various malignancies and hereditary conditions.
- To highlight the therapeutic strategies being investigated for SMARCA4-aberrant cancers.
Main Methods:
- Review of existing literature on SMARCA4 gene alterations and associated clinical conditions.
- Analysis of the impact of different SMARCA4 alteration classes on tumor development.
- Overview of current and emerging therapeutic approaches targeting SMARCA4-deficient cancers.
Main Results:
- SMARCA4 alterations are characteristic of rare tumors like SCCOHT and sarcomas, and also occur in common carcinomas (lung, colon, bladder, breast).
- Germline SMARCA4 variants cause rhabdoid tumor predisposition syndrome-2 (RTPS2) and Coffin-Siris syndrome.
- Anecdotal responses to immune checkpoint blockade in SCCOHT and ongoing trials for various targeted therapies.
Conclusions:
- SMARCA4 alterations represent a significant oncogenic driver across diverse tumor types and hereditary syndromes.
- Targeted therapies, including immune checkpoint inhibitors and specific molecularly targeted agents, show promise for SMARCA4-aberrant cancers.
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