FOXA1 调控前列腺癌中核糖体 RNA 的转录

The Prostate Pub Date : 2024-04-18 DOI:10.1002/pros.24714
Tianwei Jia, Chenxu Liu, Ping Guo, Yaning Xu, Wenzheng Wang, Xiaoyu Liu, Song Wang, Xianglin Zhang, Haiyang Guo
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引用次数: 0

摘要

背景核糖体生物发生在肿瘤细胞中被过度激活,但致癌转录因子(TFs)是否参与了核糖体RNA(rRNA)的转录激活却鲜为人知。将五个前列腺癌(PCa)队列的 RNA-Seq 数据与多维数据进行整合,以确定 PCa 组织中上调的核极 TFs。然后,重新分析了 PCa 细胞系和两个 PCa 临床队列的 ChIP-Seq 数据,以揭示核糖体 DNA(rDNA)重复序列上的 TF 结合模式。通过 ChIP-qPCR 验证了 TF 与 rDNA 的结合。结果在这项研究中,我们揭示了致癌基因 TF FOXA1 在调节核小体组织区域内 rRNA 转录中的作用。通过分析前列腺癌临床数据集和核小体蛋白质组学数据中的人类 TFs,我们发现 FOXA1 部分定位于核小体,并与全局蛋白质翻译相关。我们广泛的 FOXA1 ChIP-Seq 分析提供了强有力的证据,证明 FOXA1 在前列腺癌细胞系、原发肿瘤和阉割耐药变体中与 rDNA 重复序列结合。值得注意的是,FOXA1在rDNA重复序列上的占据与活跃转录相关的组蛋白修饰(即H3K27ac和H3K4me3)有关。减少 FOXA1 的表达会导致 rDNA 上的转录激活减少,进而减少全局蛋白质合成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FOXA1 regulates ribosomal RNA transcription in prostate cancer
BackgroundRibosome biogenesis is excessively activated in tumor cells, yet it is little known whether oncogenic transcription factors (TFs) are involved in the ribosomal RNA (rRNA) transactivation.MethodsNucleolar proteomics data and large‐scale immunofluorescence were re‐analyzed to jointly identify the proteins localized at nucleolus. RNA‐Seq data of five prostate cancer (PCa) cohorts were combined and integrated with multi‐dimensional data to define the upregulated nucleolar TFs in PCa tissues. Then, ChIP‐Seq data of PCa cell lines and two PCa clinical cohorts were re‐analyzed to reveal the TF binding patterns at ribosomal DNA (rDNA) repeats. The TF binding at rDNA was validated by ChIP‐qPCR. The effect of the TF on rRNA transcription was determined by rDNA luciferase reporter, nascent RNA synthesis, and global protein translation assays.ResultsIn this study, we reveal the role of oncogenic TF FOXA1 in regulating rRNA transcription within nucleolar organization regions. By analyzing human TFs in prostate cancer clinical datasets and nucleolar proteomics data, we identified that FOXA1 is partially localized in the nucleolus and correlated with global protein translation. Our extensive FOXA1 ChIP‐Seq analysis provides robust evidence of FOXA1 binding across rDNA repeats in prostate cancer cell lines, primary tumors, and castration‐resistant variants. Notably, FOXA1 occupancy at rDNA repeats correlates with histone modifications associated with active transcription, namely H3K27ac and H3K4me3. Reducing FOXA1 expression results in decreased transactivation at rDNA, subsequently diminishing global protein synthesis.ConclusionsOur results suggest FOXA1 regulates aberrant ribosome biogenesis downstream of oncogenic signaling in prostate cancer.
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