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大肠杆菌丙氨酰 - tRNA合成酶基序2中的不变精氨酸对催化作用很重要,但对底物结合不重要。

The invariant arginine in motif 2 of Escherichia coli alanyl-tRNA synthetase is important for catalysis but not for substrate binding.

作者信息

Lu Y, Hill K A

机构信息

Department of Biochemistry, Loma Linda University School of Medicine, California 92350.

出版信息

J Biol Chem. 1994 Apr 22;269(16):12137-41.

PMID:8163518
Abstract

Structural motifs 2 and 3, located in the active site of class II aminoacyl-tRNA synthetases, each contain an invariant arginine thought to participate in interactions with ATP. For Escherichia coli alanyl-tRNA synthetase (AlaRS), sequence comparisons indicate that Arg-69 should be aligned with the invariant arginine in motif 2 of other class II synthetases. Site-directed random mutagenesis has been employed to generate a set of proteins containing amino acid substitutions in a portion of motif 2 of AlaRS. In this set, only mutations at position 69 caused the enzyme to lose ability to complement growth of an alaS deletion strain, and proteins containing substitutions at position 69 alone are undetectable in a Western blot assay. A mutant protein containing the transposition of Arg-69 with Gly-71 does not complement growth but does accumulate in vivo and has thus been purified. Michaelis and dissociation constants for the interaction of this protein with ATP are indistinguishable from those of the wild-type enzyme. However, this two-position displacement of the arginine causes a decrease in the kcat for the ATP-PPi exchange reaction by 2 orders of magnitude. These data suggest a role for the invariant arginine of motif 2 in stabilization of the transition state during alanyladenylate synthesis.

摘要

结构基序2和3位于II类氨酰 - tRNA合成酶的活性位点,每个都含有一个不变的精氨酸,据认为该精氨酸参与与ATP的相互作用。对于大肠杆菌丙氨酰 - tRNA合成酶(AlaRS),序列比较表明,Arg - 69应与其他II类合成酶基序2中的不变精氨酸对齐。已采用定点随机诱变来生成一组在AlaRS基序2的一部分中含有氨基酸取代的蛋白质。在这组蛋白质中,只有69位的突变导致该酶失去补充alaS缺失菌株生长的能力,并且仅在69位含有取代的蛋白质在蛋白质免疫印迹分析中检测不到。一种含有将Arg - 69与Gly - 71换位的突变蛋白不能补充生长,但确实在体内积累,因此已被纯化。该蛋白与ATP相互作用的米氏常数和解离常数与野生型酶的无法区分。然而,精氨酸的这种两位置换导致ATP - PPi交换反应的催化常数(kcat)降低了2个数量级。这些数据表明基序2中的不变精氨酸在丙氨酰腺苷酸合成过程中过渡态的稳定中起作用。

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