PBRM1的替代剪接介导了肾癌患者对PD-1阻断疗法的耐受性。

Namjoon Cho,Seung-Yeon Kim,Sung-Gwon Lee,Chungoo Park,Sunkyung Choi,Eun-Mi Kim,Kee K Kim
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摘要

交替前核糖核酸剪接(AS)是一个导致蛋白质组多样性的生物学过程。然而,人们对AS改变在癌症中的影响仍然知之甚少。在此,我们对 15 种癌症类型的癌症驱动基因转录本进行了全面的 AS 分析,发现在大多数类型的癌症组织中,与正常组织相比,PBAF SWI/SNF 染色质重塑复合体亚基 Polybromo 1(PBRM1)第 27 号外显子(E27)的包含率发生了全球性改变。进一步分析证实,PBRM1 E27 是通过 RBFOX2 与内含子 UGCAUG 元直接结合而被排除的。此外,包含E27的PBRM1异构体通过增强PBAF复合物招募到PD-L1启动子,上调PD-L1的表达。PBRM1野生型透明细胞肾细胞癌患者在表达较低的RBFOX2 mRNA水平时,对PD-1阻断疗法产生耐药性。总之,我们的研究表明,靶向 RBFOX2 介导的 PBRM1 的 AS 是一种潜在的免疫检查点阻断治疗策略。
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Alternative splicing of PBRM1 mediates resistance to PD-1 blockade therapy in renal cancer.
Alternative pre-mRNA splicing (AS) is a biological process that results in proteomic diversity. However, implications of AS alterations in cancer remain poorly understood. Herein, we performed a comprehensive AS analysis in cancer driver gene transcripts across fifteen cancer types and found global alterations in inclusion rates of the PBAF SWI/SNF chromatin remodeling complex subunit Polybromo 1 (PBRM1) exon 27 (E27) in most types of cancer tissues compared with those in normal tissues. Further analysis confirmed that PBRM1 E27 is excluded by the direct binding of RBFOX2 to intronic UGCAUG elements. In addition, the E27-included PBRM1 isoform upregulated PD-L1 expression via enhanced PBAF complex recruitment to the PD-L1 promoter. PBRM1 wild-type patients with clear cell renal cell carcinoma were resistant to PD-1 blockade therapy when they expressed low RBFOX2 mRNA levels. Overall, our study suggests targeting of RBFOX2-mediated AS of PBRM1 as a potential therapeutic strategy for immune checkpoint blockade.
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