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Roquin与微小RNA-146a和AGO2结合以调节微小RNA的稳态。

Roquin binds microRNA-146a and Argonaute2 to regulate microRNA homeostasis.

作者信息

Srivastava Monika, Duan Guowen, Kershaw Nadia J, Athanasopoulos Vicki, Yeo Janet H C, Ose Toyoyuki, Hu Desheng, Brown Simon H J, Jergic Slobodan, Patel Hardip R, Pratama Alvin, Richards Sashika, Verma Anil, Jones E Yvonne, Heissmeyer Vigo, Preiss Thomas, Dixon Nicholas E, Chong Mark M W, Babon Jeffrey J, Vinuesa Carola G

机构信息

Department of Pathogens and Immunity, John Curtin School of Medical Research, Canberra, Australian Capital Territory 2601, Australia.

Division of Structural Biology, Walter and Eliza Hall Institute and The University of Melbourne, Melbourne, Victoria 3052, Australia.

出版信息

Nat Commun. 2015 Feb 20;6:6253. doi: 10.1038/ncomms7253.

Abstract

Roquin is an RNA-binding protein that prevents autoimmunity and inflammation via repression of bound target mRNAs such as inducible costimulator (Icos). When Roquin is absent or mutated (Roquin(san)), Icos is overexpressed in T cells. Here we show that Roquin enhances Dicer-mediated processing of pre-miR-146a. Roquin also directly binds Argonaute2, a central component of the RNA-induced silencing complex, and miR-146a, a microRNA that targets Icos mRNA. In the absence of functional Roquin, miR-146a accumulates in T cells. Its accumulation is not due to increased transcription or processing, rather due to enhanced stability of mature miR-146a. This is associated with decreased 3' end uridylation of the miRNA. Crystallographic studies reveal that Roquin contains a unique HEPN domain and identify the structural basis of the 'san' mutation and Roquin's ability to bind multiple RNAs. Roquin emerges as a protein that can bind Ago2, miRNAs and target mRNAs, to control homeostasis of both RNA species.

摘要

Roquin是一种RNA结合蛋白,它通过抑制如诱导性共刺激分子(Icos)等结合的靶mRNA来预防自身免疫和炎症。当Roquin缺失或发生突变(Roquin(san))时,Icos在T细胞中过度表达。在此我们表明,Roquin增强了Dicer介导的前体miR-146a的加工过程。Roquin还直接结合RNA诱导沉默复合体的核心组分AGO2以及靶向Icos mRNA的微小RNA miR-146a。在缺乏功能性Roquin的情况下,miR-146a在T细胞中积累。其积累并非由于转录或加工增加,而是由于成熟miR-146a的稳定性增强。这与miRNA 3'端尿苷酸化减少相关。晶体学研究表明,Roquin含有一个独特的HEPN结构域,并确定了“san”突变的结构基础以及Roquin结合多种RNA的能力。Roquin是一种能够结合AGO2、miRNA和靶mRNA以控制两种RNA种类稳态的蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faf6/4346627/127c32488711/ncomms7253-f1.jpg

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