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一种转移RNA合成酶与RNA小沟中2'-羟基的功能接触。

Functional contacts of a transfer RNA synthetase with 2'-hydroxyl groups in the RNA minor groove.

作者信息

Musier-Forsyth K, Schimmel P

机构信息

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

出版信息

Nature. 1992 Jun 11;357(6378):513-5. doi: 10.1038/357513a0.

Abstract

The functional analysis of determinants on RNA has been largely limited to molecules that contain naturally occurring ribonucleotides, so little is known about the role of 2'-hydroxyl groups in protein-RNA recognition. A single base pair (G3.U70) in the acceptor stem of tRNA(Ala) is the principal element for specific recognition by Escherichia coli alanine-tRNA synthetase. This tRNA synthetase aminoacylates small RNA helices that contain the G3.U70 base pair. Furthermore, removal of the G3 exocyclic 2-amino group that projects into the minor groove eliminates aminoacylation. This 2-amino group is flanked on either side by ribose 2'-hydroxyl groups that line the minor groove. Here we use chemical synthesis to construct 32 helices that make deoxy and O-methyl substitutions of individual and multiple 2'-hydroxyl groups near and beyond the G3.U70 base pair and find that functional 2'-hydroxyl contacts are clustered within a few ångstroms of the critical 2-amino group. These contacts are highly specific and make a thermodynamically significant contribution to RNA recognition.

摘要

对RNA上决定因素的功能分析在很大程度上局限于含有天然核糖核苷酸的分子,因此对于2'-羟基在蛋白质-RNA识别中的作用了解甚少。tRNA(Ala)受体茎中的一个碱基对(G3.U70)是大肠杆菌丙氨酸-tRNA合成酶进行特异性识别的主要元件。这种tRNA合成酶能将含有G3.U70碱基对的小RNA螺旋氨酰化。此外,去除伸向小沟的G3外环2-氨基会消除氨酰化作用。这个2-氨基的两侧是排列在小沟中的核糖2'-羟基。在这里,我们使用化学合成方法构建了32个螺旋,这些螺旋对G3.U70碱基对附近及以外的单个和多个2'-羟基进行脱氧和O-甲基取代,发现功能性的2'-羟基接触聚集在关键2-氨基的几埃范围内。这些接触具有高度特异性,并且对RNA识别在热力学上有显著贡献。

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