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SIRT2 is a regulator of the differentiation block driven by SMARCB1 loss in ATRT. [RNA-Seq]

GSE273417 Homo sapiens Expression profiling by high throughput sequencing 8 samples Submitted 2025/06/16 Platform GPL34281
Summary
Atypical teratoid rhabdoid tumor (ATRT) is a highly aggressive brain tumor of childhood with a poor overall survival. The salient molecular feature of ATRT is the loss of SMARCB1 which results in epigenetic dysregulation of the genome. SMARCB1 loss affects lineage commitment and differentiation by controlling gene expression. We hypothesized that additional epigenetic factors co-operate with SMARCB1 loss to control cell self-renewal and drive ATRT. We identified SIRT2 as a primary dependency in ATRT. Using a combination of RNA-seq, CUT&RUN and single RNA sequencing in model systems ATRT, we observed genome-wide reorganization of active chromatin and significantly changes in genes expression in ATRT cells with genetic (with shRNA) or chemical (with Tenovin or Thiomyristoyl (TM)) SIRT2 deactivation. Single-cell RNA transcriptome analysis of xenograft tumors revealed the elimination of tumor cells expressing stem cell genes and expansion of tumor cells expressing differentiated genes in vivo. Furthermore, SIRT2 inhibition induced apoptosis, decreased tumor growth and prolonged survival in orthotopic xenograft models. In summary we demonstrated that SIRT2 inhibition is a molecular vulnerability in SMARCB1-deleted tumors with therapeutic potential.
Published in
SIRT2 Regulates the SMARCB1 Loss-Driven Differentiation Block in ATRT
Alimova I, Wang D, DeSisto J et al. · Molecular cancer research : MCR 2025 · PMID 39960392 · doi:10.1158/1541-7786.MCR-24-0926
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Also filed as BioProject PRJNA1141599 and SRA study SRP523003. Searching any of these in the dataset finder brings you back here.

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