分泌核糖核酸酶RNASE1在抑制基因表达中的细胞内新功能的鉴定。

IF 3.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ragini Singh, Ahlina Archibald, Xiao Ling Li, Ravi Kumar, Shaoli Das, Erica C Pehrsson, Patrick X Zhao, Xinyu Wen, Raj Chari, Ioannis Grammatikakis, Ashish Lal
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引用次数: 0

摘要

RNASE1是一种由细胞分泌的核糖核酸酶,可降解细胞外rna。在这里,我们意外地发现RNASE1除了分泌外,主要定位于细胞核,并在人类结直肠癌(CRC)细胞中起抑制基因表达的作用。RNASE1的表达具有高度的细胞类型特异性,仅限于分化良好的CRC细胞,其转录由先锋转录因子FOXA1激活。我们利用三个独立的sgrna靶向RNASE1位点并进行RNA-seq的CRISPR干扰,发现在RNASE1耗尽后,大多数差异表达的rna都适度但显著上调,这表明RNASE1的主要功能是抑制基因表达。在结直肠癌患者中,RNASE1显著下调,RNASE1的高表达与患者更好的生存率相关,表明其具有潜在的肿瘤抑制功能。与此一致,RNASE1缺失导致增殖和克隆性增加,表明RNASE1抑制CRC细胞的生长。最后,在RNASE1缺失时最显著上调的mrna中,一个有希望的RNASE1靶标是DKK1 (Dickkopf inhibitor 1),它在CRC中上调,并受到RNASE1的负调控。总的来说,内源性RNASE1的初步表征揭示了RNASE1在抑制基因表达和CRC细胞增殖中的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of a Novel Intracellular Function of the Secreted Ribonuclease RNASE1 in Inhibiting Gene Expression.

RNASE1 is a ribonuclease secreted by cells and degrades extracellular RNAs. Here, we unexpectedly found that RNASE1, in addition to being secreted, is predominantly localized to the nucleus and functions to inhibit gene expression in human colorectal cancer (CRC) cells. RNASE1 expression is highly cell type-specific and is restricted to well-differentiated CRC cells where its transcription is activated by the pioneer transcription factor FOXA1. Using CRISPR interference utilizing three independent sgRNAs targeting the RNASE1 locus followed by RNA-seq, we found that upon depletion of RNASE1, most of the differentially expressed RNAs are modestly but significantly upregulated suggesting that RNASE1 predominantly functions to inhibit gene expression. In CRC patients, RNASE1 is significantly downregulated and high RNASE1 expression is associated with better patient survival, indicating a potential tumor suppressive function. Consistent with this, RNASE1 depletion results in increased proliferation and clonogenicity indicating that RNASE1 inhibits the growth of CRC cells. Finally, a promising RNASE1 target among the most significantly upregulated mRNAs upon RNASE1 depletion is DKK1 (Dickkopf inhibitor 1) which is upregulated in CRC and negatively regulated by RNASE1. Collectively, this initial characterization of endogenous RNASE1 uncovers a function of RNASE1 in inhibition of gene expression and CRC cell proliferation.

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来源期刊
Molecular and Cellular Biology
Molecular and Cellular Biology 生物-生化与分子生物学
CiteScore
9.80
自引率
1.90%
发文量
120
审稿时长
1 months
期刊介绍: Molecular and Cellular Biology (MCB) showcases significant discoveries in cellular morphology and function, genome organization, regulation of genetic expression, morphogenesis, and somatic cell genetics. The journal also examines viral systems, publishing papers that emphasize their impact on the cell.
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