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天冬氨酰 - tRNA合成酶在体内识别tRNA(Asn)时,需要反密码子结合环中有一个保守的脯氨酸。

Aspartyl-tRNA synthetase requires a conserved proline in the anticodon-binding loop for tRNA(Asn) recognition in vivo.

作者信息

Feng Liang, Yuan Jing, Toogood Helen, Tumbula-Hansen Debra, Söll Dieter

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114, USA.

出版信息

J Biol Chem. 2005 May 27;280(21):20638-41. doi: 10.1074/jbc.M500874200. Epub 2005 Mar 21.

Abstract

Most prokaryotes require Asp-tRNA(Asn) for the synthesis of Asn-tRNA(Asn). This misacylated tRNA species is synthesized by a non-discriminating aspartyl-tRNA synthetase (AspRS) that acylates both tRNA(Asp) and tRNA(Asn) with aspartate. In contrast, a discriminating AspRS forms only Asp-tRNA(Asp). Here we show that a conserved proline (position 77) in the L1 loop of the non-discriminating Deinococcus radiodurans AspRS2 is required for tRNA(Asn) recognition in vivo. Escherichia coli trpA34 was transformed with DNA from a library of D. radiodurans aspS2 genes with a randomized codon 77 and then subjected to in vivo selection for Asp-tRNA(Asn) formation by growth in minimal medium. Only proline codons were found at position 77 in the aspS2 genes isolated from 21 of the resulting viable colonies. However, when the aspS temperature-sensitive E. coli strain CS89 was transformed with the same DNA library and then screened for Asp-tRNA(Asp) formation in vivo by growth at the non-permissive temperature, codons for seven other amino acids besides proline were identified at position 77 in the isolates examined. Thus, replacement of proline 77 by cysteine, isoleucine, leucine, lysine, phenylalanine, serine, or valine resulted in mutant D. radiodurans AspRS2 enzymes still capable of forming Asp-tRNA(Asp) but unable to recognize tRNA(Asn). This strongly suggests that proline 77 is responsible for the non-discriminatory tRNA recognition properties of this enzyme.

摘要

大多数原核生物合成天冬酰胺 - tRNA(Asn)需要天冬氨酸 - tRNA(Asn)。这种错误酰化的tRNA种类是由一种无特异性的天冬氨酰 - tRNA合成酶(AspRS)合成的,该酶用天冬氨酸将tRNA(Asp)和tRNA(Asn)都进行酰化。相比之下,一种有特异性的AspRS只形成天冬氨酸 - tRNA(Asp)。在这里我们表明,无特异性的耐辐射球菌AspRS2的L1环中一个保守的脯氨酸(第77位)对于体内tRNA(Asn)的识别是必需的。用来自耐辐射球菌aspS2基因文库的DNA转化大肠杆菌trpA34,该文库的密码子77是随机化的,然后通过在基本培养基中生长进行体内选择以形成天冬氨酸 - tRNA(Asn)。从21个所得的存活菌落中分离出的aspS2基因的第77位只发现了脯氨酸密码子。然而,当用相同的DNA文库转化aspS温度敏感型大肠杆菌菌株CS89,然后通过在非允许温度下生长来筛选体内天冬氨酸 - tRNA(Asp)的形成时,在所检查的分离物的第77位鉴定出了除脯氨酸之外的其他七种氨基酸的密码子。因此,用半胱氨酸、异亮氨酸、亮氨酸、赖氨酸、苯丙氨酸、丝氨酸或缬氨酸取代脯氨酸77会导致突变的耐辐射球菌AspRS2酶仍然能够形成天冬氨酸 - tRNA(Asp),但无法识别tRNA(Asn)。这有力地表明脯氨酸77负责该酶的非特异性tRNA识别特性。

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