This is a preprint.
ASPSCR1-TFE3 reprograms transcription by organizing enhancer loops around hexameric VCP/p97
- PMID: 37873234
- PMCID: PMC10592841
- DOI: 10.1101/2023.09.29.560242
ASPSCR1-TFE3 reprograms transcription by organizing enhancer loops around hexameric VCP/p97
Update in
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ASPSCR1-TFE3 reprograms transcription by organizing enhancer loops around hexameric VCP/p97.Nat Commun. 2024 Feb 7;15(1):1165. doi: 10.1038/s41467-024-45280-5. Nat Commun. 2024. PMID: 38326311 Free PMC article.
Abstract
The t(X,17) chromosomal translocation, generating the ASPSCR1-TFE3 fusion oncoprotein, is the singular genetic driver of alveolar soft part sarcoma (ASPS) and some Xp11-rearranged renal cell carcinomas (RCC), frustrating efforts to identify therapeutic targets for these rare cancers. Proteomic analysis showed that VCP/p97, an AAA+ ATPase with known segregase function, was strongly enriched in co-immunoprecipitated nuclear complexes with ASPSCR1-TFE3. We demonstrate that VCP is a likely obligate co-factor of ASPSCR1-TFE3, one of the only such fusion oncoprotein co-factors identified in cancer biology. Specifically, VCP co-distributed with ASPSCR1-TFE3 across chromatin in association with enhancers genome-wide. VCP presence, its hexameric assembly, and its enzymatic function orchestrated the oncogenic transcriptional signature of ASPSCR1-TFE3, by facilitating assembly of higher-order chromatin conformation structures as demonstrated by HiChIP. Finally, ASPSCR1-TFE3 and VCP demonstrated co-dependence for cancer cell proliferation and tumorigenesis in vitro and in ASPS and RCC mouse models, underscoring VCP's potential as a novel therapeutic target.
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