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RNA 结合蛋白抑制缺氧和细胞周期信号。

RNA-Binding Protein Suppresses Hypoxia and Cell-Cycle Signaling.

机构信息

Cancer Science Institute of Singapore, National University of Singapore, Singapore.

Department of Genetics, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, Brazil.

出版信息

Cancer Res. 2020 Jan 15;80(2):219-233. doi: 10.1158/0008-5472.CAN-18-2796. Epub 2019 Sep 24.

Abstract

ZFP36L1 is a tandem zinc-finger RNA-binding protein that recognizes conserved adenylate-uridylate-rich elements (ARE) located in 3'untranslated regions (UTR) to mediate mRNA decay. We hypothesized that ZFP36L1 is a negative regulator of a posttranscriptional hub involved in mRNA half-life regulation of cancer-related transcripts. Analysis of data revealed that ZFP36L1 was significantly mutated, epigenetically silenced, and downregulated in a variety of cancers. Forced expression of ZFP36L1 in cancer cells markedly reduced cell proliferation and , whereas silencing of ZFP36L1 enhanced tumor cell growth. To identify direct downstream targets of ZFP36L1, systematic screening using RNA pull-down of wild-type and mutant ZFP36L1 as well as whole transcriptome sequencing of bladder cancer cells {plus minus} tet-on ZFP36L1 was performed. A network of 1,410 genes was identified as potential direct targets of ZFP36L1. These targets included a number of key oncogenic transcripts such as HIF1A, CCND1, and E2F1. ZFP36L1 specifically bound to the 3'UTRs of these targets for mRNA degradation, thus suppressing their expression. Dual luciferase reporter assays and RNA electrophoretic mobility shift assays showed that wild-type, but not zinc-finger mutant ZFP36L1, bound to HIF1A 3'UTR and mediated HIF1A mRNA degradation, leading to reduced expression of HIF1A and its downstream targets. Collectively, our findings reveal an indispensable role of ZFP36L1 as a posttranscriptional safeguard against aberrant hypoxic signaling and abnormal cell-cycle progression. SIGNIFICANCE: RNA-binding protein ZFP36L1 functions as a tumor suppressor by regulating the mRNA stability of a number of mRNAs involved in hypoxia and cell-cycle signaling.

摘要

ZFP36L1 是一种串联锌指 RNA 结合蛋白,可识别位于 3'非翻译区 (UTR) 中的保守腺苷酸尿苷丰富元件 (ARE),以介导 mRNA 降解。我们假设 ZFP36L1 是参与癌症相关转录物 mRNA 半衰期调节的转录后调控枢纽的负调节剂。数据分析表明,ZFP36L1 在多种癌症中发生显著突变、表观沉默和下调。在癌细胞中强制表达 ZFP36L1 可显著降低细胞增殖和迁移,而沉默 ZFP36L1 则增强肿瘤细胞生长。为了鉴定 ZFP36L1 的直接下游靶标,我们使用野生型和突变型 ZFP36L1 的 RNA 下拉和膀胱癌细胞 {plus minus} tet-on ZFP36L1 的全转录组测序进行了系统筛选。鉴定出一个包含 1410 个基因的网络作为 ZFP36L1 的潜在直接靶标。这些靶标包括许多关键致癌转录物,如 HIF1A、CCND1 和 E2F1。ZFP36L1 特异性结合这些靶标的 3'UTR 以降解 mRNA,从而抑制其表达。双荧光素酶报告基因检测和 RNA 电泳迁移率变动分析表明,野生型而非锌指突变型 ZFP36L1 结合 HIF1A 3'UTR 并介导 HIF1A mRNA 降解,导致 HIF1A 及其下游靶标表达降低。总之,我们的研究结果揭示了 ZFP36L1 作为一种转录后保障机制,可防止异常缺氧信号和异常细胞周期进展。意义:RNA 结合蛋白 ZFP36L1 通过调节参与缺氧和细胞周期信号的多种 mRNA 的 mRNA 稳定性,发挥肿瘤抑制作用。

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