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人细胞质 ProX 以氨基酸而非 tRNA 特异性编辑错载 tRNAPro。

Human cytoplasmic ProX edits mischarged tRNAPro with amino acid but not tRNA specificity.

机构信息

State Key Laboratory of Molecular Biology, Center for RNA Research, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.

出版信息

Biochem J. 2013 Feb 15;450(1):243-52. doi: 10.1042/BJ20121493.

Abstract

aaRSs (aminoacyl-tRNA synthetases) are responsible for ensuring the fidelity of the genetic code translation by accurately linking a particular amino acid to its cognate tRNA isoacceptor. To ensure accuracy of protein biosynthesis, some aaRSs have evolved an editing process to remove mischarged tRNA. The hydrolysis of the mischarged tRNA usually occurs in an editing domain, which is inserted into or appended to the main body of the aaRS. In addition, autonomous, editing domain-homologous proteins can also trans-edit mischarged tRNA in concert or in compensating for the editing function of its corresponding aaRS. The freestanding ProX is a homologue of the editing domain of bacterial ProRS (prolyl-tRNA synthetase). In the present study, we cloned for the first time a gene encoding HsProX (human cytoplasmic ProX) and purified the expressed recombinant protein. The catalytic specificity of HsProX for non-cognate amino acids and identity elements on tRNAPro for editing were also investigated. We found that HsProX could deacylate mischarged Ala-tRNAPro, but not Cys-HstRNA(UGGPro), and specifically targeted the alanine moiety of Ala-tRNAPro. The importance of the CCA76 end of the tRNA for deacylation activity and key amino acid residues in HsProX for its editing function were also identified.

摘要

aaRSs(氨酰-tRNA 合成酶)通过将特定的氨基酸准确地连接到其对应的 tRNA 同工受体来确保遗传密码翻译的保真度。为了确保蛋白质生物合成的准确性,一些 aaRSs 已经进化出一种编辑过程来去除错误负载的 tRNA。错误负载的 tRNA 的水解通常发生在编辑结构域中,该结构域插入或附加到 aaRS 的主体上。此外,自主的、具有编辑结构域同源的蛋白质也可以协同或补偿其相应的 aaRS 的编辑功能来编辑错误负载的 tRNA。游离态的 ProX 是细菌 ProRS(脯氨酰-tRNA 合成酶)的编辑结构域的同源物。在本研究中,我们首次克隆了编码人细胞质 ProX(HsProX)的基因,并纯化了表达的重组蛋白。还研究了 HsProX 对非对应氨基酸和 tRNAPro 上的身份元素的催化特异性。我们发现 HsProX 可以脱酰化错误负载的 Ala-tRNAPro,但不能脱酰化 Cys-HstRNA(UGGPro),并且特异性靶向 Ala-tRNAPro 的丙氨酸部分。还确定了 tRNA 的 CCA76 末端对脱酰化活性以及 HsProX 中对其编辑功能的关键氨基酸残基的重要性。

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