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I类tRNA合成酶中决定tRNA背景下氨基酸识别选择性的残基。

Residues in a class I tRNA synthetase which determine selectivity of amino acid recognition in the context of tRNA.

作者信息

Schmidt E, Schimmel P

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Biochemistry. 1995 Sep 5;34(35):11204-10. doi: 10.1021/bi00035a028.

Abstract

Certain aminoacyl-tRNA synthetases discriminate between closely similar amino acids by hydrolytic editing reactions in the presence of their cognate tRNA. An example is the class I isoleucyl-tRNA synthetase. We recently showed that a mutation which eliminates discrimination between isoleucine (Ile) and valine (Val) in the initial amino acid binding and activation steps had little effect on the hydrolytic editing of activated valine in the presence of isoleucine tRNA (tRNA(Ile)). The results showed that initial amino acid binding and discrimination are functionally independent of tRNA-dependent amino acid discrimination. In this work, we cross-linked (to isoleucyl-tRNA synthetase) a reactive analog of valine misacylated onto tRNA(Ile). Mutation of specific residues within a peptide segment identified by the cross-linking analysis severely affected discrimination of Val-tRNA(Ile) versus Ile-tRNA(Ile). The mutationally sensitive residues are part of an insertion into the catalytic domain and are themselves completely conserved among all known prokaryotic and eukaryotic sequences of the enzyme.

摘要

某些氨酰-tRNA合成酶在其同源tRNA存在的情况下,通过水解编辑反应来区分结构相似的氨基酸。I类异亮氨酰-tRNA合成酶就是一个例子。我们最近发现,一个在初始氨基酸结合和活化步骤中消除异亮氨酸(Ile)和缬氨酸(Val)区分能力的突变,在异亮氨酸tRNA(tRNA(Ile))存在的情况下,对活化缬氨酸的水解编辑影响很小。结果表明,初始氨基酸结合和区分在功能上独立于tRNA依赖的氨基酸区分。在这项工作中,我们将错配到tRNA(Ile)上的缬氨酸的反应性类似物与异亮氨酰-tRNA合成酶交联。通过交联分析鉴定出的肽段内特定残基的突变严重影响了Val-tRNA(Ile)与Ile-tRNA(Ile)的区分。突变敏感残基是催化结构域插入部分的一部分,并且在该酶所有已知的原核和真核序列中本身是完全保守的。

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