Department of Neuroscience, Section of Human Anatomy, Catholic University of the Sacred Heart, Rome 00168, Italy.
IRCCS Fondazione Policlinico A. Gemelli, Rome 00168, Italy.
Nucleic Acids Res. 2022 Sep 23;50(17):9780-9796. doi: 10.1093/nar/gkac737.
Prostate cancer (PC) relies on androgen receptor (AR) signaling. While hormonal therapy (HT) is efficacious, most patients evolve to an incurable castration-resistant stage (CRPC). To date, most proposed mechanisms of acquired resistance to HT have focused on AR transcriptional activity. Herein, we uncover a new role for the AR in alternative cleavage and polyadenylation (APA). Inhibition of the AR by Enzalutamide globally regulates APA in PC cells, with specific enrichment in genes related to transcription and DNA topology, suggesting their involvement in transcriptome reprogramming. AR inhibition selects promoter-distal polyadenylation sites (pAs) enriched in cis-elements recognized by the cleavage and polyadenylation specificity factor (CPSF) complex. Conversely, promoter-proximal intronic pAs relying on the cleavage stimulation factor (CSTF) complex are repressed. Mechanistically, Enzalutamide induces rearrangement of APA subcomplexes and impairs the interaction between CPSF and CSTF. AR inhibition also induces co-transcriptional CPSF recruitment to gene promoters, predisposing the selection of pAs depending on this complex. Importantly, the scaffold CPSF160 protein is up-regulated in CRPC cells and its depletion represses HT-induced APA patterns. These findings uncover an unexpected role for the AR in APA regulation and suggest that APA-mediated transcriptome reprogramming represents an adaptive response of PC cells to HT.
前列腺癌 (PC) 依赖于雄激素受体 (AR) 信号。尽管激素治疗 (HT) 有效,但大多数患者会发展为不可治愈的去势抵抗阶段 (CRPC)。迄今为止,大多数对 HT 获得性耐药的提出的机制都集中在 AR 转录活性上。在此,我们揭示了 AR 在选择性剪接和多聚腺苷酸化 (APA) 中的一个新作用。恩扎鲁胺抑制 AR 会全局调节 PC 细胞中的 APA,特别富集与转录和 DNA 拓扑相关的基因,表明它们参与了转录组重编程。AR 抑制选择富含 cis 元件的启动子远端多聚腺苷酸化位点 (pAs),这些 cis 元件被切割和多聚腺苷酸化特异性因子 (CPSF) 复合物识别。相反,依赖切割刺激因子 (CSTF) 复合物的启动子近端内含子 pAs 受到抑制。从机制上讲,恩扎鲁胺诱导 APA 亚复合物的重排,并损害 CPSF 和 CSTF 之间的相互作用。AR 抑制还诱导 CPSF 在基因启动子上的共转录募集,从而有利于根据该复合物选择 pAs。重要的是,CRPC 细胞中 scaffold CPSF160 蛋白上调,其耗竭抑制 HT 诱导的 APA 模式。这些发现揭示了 AR 在 APA 调节中的意外作用,并表明 APA 介导的转录组重编程代表了 PC 细胞对 HT 的适应性反应。