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核糖核酸酶P特异性结构域的晶体结构

Crystal structure of the specificity domain of ribonuclease P.

作者信息

Krasilnikov Andrey S, Yang Xiaojing, Pan Tao, Mondragón Alfonso

机构信息

Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, Illinois 60208, USA.

出版信息

Nature. 2003 Feb 13;421(6924):760-4. doi: 10.1038/nature01386.

Abstract

RNase P is the only endonuclease responsible for processing the 5' end of transfer RNA by cleaving a precursor and leading to tRNA maturation. It contains an RNA component and a protein component and has been identified in all organisms. It was one of the first catalytic RNAs identified and the first that acts as a multiple-turnover enzyme in vivo. RNase P and the ribosome are so far the only two ribozymes known to be conserved in all kingdoms of life. The RNA component of bacterial RNase P can catalyse pre-tRNA cleavage in the absence of the RNase P protein in vitro and consists of two domains: a specificity domain and a catalytic domain. Here we report a 3.15-A resolution crystal structure of the 154-nucleotide specificity domain of Bacillus subtilis RNase P. The structure reveals the architecture of this domain, the interactions that maintain the overall fold of the molecule, a large non-helical but well-structured module that is conserved in all RNase P RNA, and the regions that are involved in interactions with the substrate.

摘要

核糖核酸酶P是唯一一种通过切割前体来处理转运RNA 5'端从而导致tRNA成熟的内切核酸酶。它包含一个RNA组分和一个蛋白质组分,并且在所有生物体中都已被鉴定出来。它是最早被鉴定出的催化RNA之一,也是第一个在体内起多周转酶作用的催化RNA。核糖核酸酶P和核糖体是迄今为止已知在所有生命王国中都保守的仅有的两种核酶。细菌核糖核酸酶P的RNA组分在体外无核糖核酸酶P蛋白质存在时可催化前体tRNA切割,并且由两个结构域组成:一个特异性结构域和一个催化结构域。在此,我们报道了枯草芽孢杆菌核糖核酸酶P的154个核苷酸特异性结构域的3.15埃分辨率晶体结构。该结构揭示了这个结构域的架构、维持分子整体折叠的相互作用、在所有核糖核酸酶P RNA中都保守的一个大的非螺旋但结构良好的模块,以及参与与底物相互作用的区域。

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