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真核生物 mRNA 去帽的结构与功能见解

Structural and functional insights into eukaryotic mRNA decapping.

机构信息

Laboratory of Macromolecular Structure, Institute of Molecular and Cell Biology, 61 Biopolis Drive, Proteos, Singapore 138673.

出版信息

Wiley Interdiscip Rev RNA. 2011 Mar-Apr;2(2):193-208. doi: 10.1002/wrna.44. Epub 2010 Sep 2.

Abstract

The control of messenger RNA (mRNA) translation and degradation is important in regulation of eukaryotic gene expression. In the general and specialized mRNA decay pathways which involve 5(') →3(') decay, decapping is the central step because it is the controlling gate preceding the actual degradation of mRNA and is a site of numerous control inputs. Removal of the cap structure is catalyzed by a decapping holoenzyme composed of the catalytic Dcp2 subunit and the coactivator Dcp1. Decapping is regulated by decapping activators and inhibitors. Recent structural and kinetics studies indicated that Dcp1 and the substrate RNA promote the closed form of the enzyme and the catalytic step of decapping is rate limiting and accelerated by Dcp1. The conformational change between the open and closed decapping enzyme is important for controlling decapping, and regulation of this transition has been proposed to be a checkpoint for determining the fate of mRNAs. Here we summarize the past and recent advances on the structural and functional studies of protein factors involved in regulating mRNA decapping.

摘要

信使 RNA(mRNA)翻译和降解的控制在真核基因表达调控中很重要。在涉及 5'→3'降解的一般和专门的 mRNA 降解途径中,脱帽是中心步骤,因为它是在 mRNA 实际降解之前控制的门户,并且是许多控制输入的位点。帽结构的去除由脱帽全酶催化,该全酶由催化 Dcp2 亚基和共激活因子 Dcp1 组成。脱帽受脱帽激活剂和抑制剂的调节。最近的结构和动力学研究表明,Dcp1 和底物 RNA 促进酶的封闭形式,脱帽的催化步骤是限速的,并由 Dcp1 加速。开放和封闭脱帽酶之间的构象变化对于控制脱帽很重要,并且已经提出对这种转变的调节是确定 mRNA 命运的检查点。在这里,我们总结了过去和最近在调节 mRNA 脱帽的蛋白质因子的结构和功能研究方面的进展。

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