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前体微小RNA末端环的结构通过切换DEAH/D结构域来调节人类Dicer的切割活性。

Structure of precursor microRNA's terminal loop regulates human Dicer's dicing activity by switching DExH/D domain.

作者信息

Liu Zhongmin, Wang Jia, Li Gang, Wang Hong-Wei

机构信息

Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Peking University Health Science Center, Beijing, 100191, China.

出版信息

Protein Cell. 2015 Mar;6(3):185-93. doi: 10.1007/s13238-014-0124-2. Epub 2014 Dec 31.

Abstract

Almost all pre-miRNAs in eukaryotic cytoplasm are recognized and processed into double-stranded microRNAs by the endonuclease Dicer protein comprising of multiple domains. As a key player in the small RNA induced gene silencing pathway, the major domains of Dicer are conserved among different species with the exception of the N-terminal components. Human Dicer's N-terminal domain has been shown to play an auto-inhibitory function of the protein's dicing activity. Such an auto-inhibition can be released when the human Dicer protein dimerizes with its partner protein, such as TRBP, PACT through the N-terminal DExH/D (ATPase-helicase) domain. The typical feature of a pre-miRNA contains a terminal loop and a stem duplex, which bind to human Dicer's DExH/D (ATPase-helicase) domain and PAZ domain respectively during the dicing reaction. Here, we show that pre-miRNA's terminal loop can regulate human Dicer's enzymatic activity by interacting with the DExH/D (ATPase-helicase) domain. We found that various editing products of pre-miR-151 by the ADAR1P110 protein, an A-to-I editing enzyme that modifies pre-miRNAs sequence, have different terminal loop structures and different activity regulatory effects on human Dicer. Single particle electron microscopy reconstruction revealed that pre-miRNAs with different terminal loop structures induce human Dicer's DExH/D (ATPase-helicase) domain into different conformational states, in correlation with their activity regulatory effects.

摘要

几乎所有真核细胞质中的前体微小RNA(pre-miRNA)都被包含多个结构域的核酸内切酶Dicer蛋白识别并加工成双链微小RNA。作为小RNA诱导基因沉默途径中的关键因子,Dicer的主要结构域在不同物种中是保守的,除了N端组件。已表明人类Dicer的N端结构域对该蛋白的切割活性具有自抑制功能。当人类Dicer蛋白与其伴侣蛋白(如TRBP、PACT)通过N端DExH/D(ATP酶-解旋酶)结构域二聚化时,这种自抑制作用可以被解除。前体微小RNA的典型特征包含一个末端环和一个茎干双链体,在切割反应过程中,它们分别与人Dicer的DExH/D(ATP酶-解旋酶)结构域和PAZ结构域结合。在此,我们表明前体微小RNA的末端环可通过与DExH/D(ATP酶-解旋酶)结构域相互作用来调节人类Dicer的酶活性。我们发现,由ADAR1P110蛋白(一种修饰前体微小RNA序列的A-to-I编辑酶)对前体微小RNA-151进行的各种编辑产物具有不同的末端环结构,并且对人类Dicer具有不同的活性调节作用。单颗粒电子显微镜重建显示,具有不同末端环结构的前体微小RNA会诱导人类Dicer的DExH/D(ATP酶-解旋酶)结构域进入不同的构象状态,这与其活性调节作用相关。

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