SMARCA4 Loss Increases RNA Polymerase II Pausing and Elevates R-Loops to Inhibit BRCA1-Mediated Repair in Ovarian Cancer

SMARCA4型 生物 癌症研究 卵巢癌 聚合酶 癌症 分子生物学 染色质 染色质重塑 DNA 遗传学
作者
Xianbing Zhu,Zheng Fu,Giulio Aceto,Jonathan St‐Germain,Kexin Liu,Azadeh Arabzadeh,Yuxuan Qi,Yibo Xue,Leora Witkowski,Elise Graulich,Jutta Steinberger,Seli̇m Misirlioğlu,Nicklas Bassani,Racim Sansal,Amber Yasmeen,Geneviève Morin,Jingjie Guo,Anie Monast,Virginie Pilon,Alica Valachová
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:85 (16): 2997-3014 被引量:4
标识
DOI:10.1158/0008-5472.can-24-3990
摘要

Small cell carcinoma of the ovary, hypercalcemic type (SCCOHT) is a rare, aggressive cancer affecting young women driven by inactivating mutations in SMARCA4, a key SWI/SNF chromatin remodeling gene. To uncover its druggable vulnerabilities, we performed a compound screen and found that SCCOHT cells and tumors were sensitive to PARP inhibitors. Paradoxically, SCCOHT displayed BRCA-deficient traits despite retaining wild-type BRCA1 expression. Elevated R-loop in SCCOHT sequestered BRCA1, limiting its availability for DNA damage repair. Proximity-dependent biotin identification revealed that wild-type SMARCA4, but not its pathogenic variants, promoted RNA polymerase II (Pol II) elongation by mediating the assembly of the polymerase-associated factor 1 complex. Thus, SMARCA4 loss increased Pol II pausing, resulting in elevated R-loops and BRCA1 redistribution. The suppression of BRCA1 activity sensitized SMARCA4-deficient SCCOHT cells and tumors to PARP inhibitors, which was further enhanced by the addition of a CDK9 inhibitor targeting Pol II elongation. Cotargeting PARP/CDK9 also elicited synergistic effects against other undifferentiated ovarian cancer cells with SMARCA4 loss. These findings link SMARCA4 loss to perturbed Pol II elongation and compromised DNA repair by BRCA1, providing a therapeutic opportunity to target SCCOHT and other SWI/SNF-deficient ovarian cancers. SIGNIFICANCE: Pol II stalling induced by SMARCA4 loss leads to R-loop accumulation that sequesters BRCA1 to transcription complexes, underlying the sensitivity of SMARCA4-deficient ovarian cancers to inhibitors targeting PARPs and Pol II elongation.
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