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作为氨基酰化作用最简底物的RNA四环。

RNA tetraloops as minimalist substrates for aminoacylation.

作者信息

Shi J P, Martinis S A, Schimmel P

机构信息

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

出版信息

Biochemistry. 1992 Jun 2;31(21):4931-6. doi: 10.1021/bi00136a002.

Abstract

Previous work established that seven-base-pair hairpin microhelices with sequences based on the acceptor stems of alanine, glycine, methionine, and histidine tRNAs can be aminoacylated specifically with their cognate amino acids. To obtain "minimalist" substrates with fewer base pairs, we took advantage of the high thermodynamic stability of RNA tetraloop motifs that are found in ribosomal RNAs. We show here that rationally designed RNA tetraloops with as few as four base pairs are substrates for aminoacylation. Major nucleotide determinants for recognition by the class II synthetases were incorporated into each of the respective tetraloop substrates, resulting in specific aminoacylation by the alanine, glycine, and histidine tRNA synthetases. An analysis of the kinetics of aminoacylation shows that, for the alanine system, the majority of the transition-state stabilization provided by the synthetase-tRNA interaction is reproduced by the interaction of the synthetase with nucleotides in its minimalist tetraloop substrate. In an extension of this work, we also observed specific aminoacylation with the class I methionine tRNA synthetase of RNA tetraloops based on sequences in the acceptor stem of methionine tRNA. Thus, the results demonstrate four different examples where specific aminoacylation is directed by sequences/structures contained in less than half of a turn of an RNA helix.

摘要

先前的研究表明,具有基于丙氨酸、甘氨酸、蛋氨酸和组氨酸tRNA接受茎序列的七碱基对发夹微螺旋可以被其相应的氨基酸特异性氨酰化。为了获得碱基对更少的“极简主义”底物,我们利用了核糖体RNA中发现的RNA四环基序的高热力学稳定性。我们在此表明,合理设计的、仅有四个碱基对的RNA四环是氨酰化的底物。II类合成酶识别的主要核苷酸决定因素被纳入各自的四环底物中,导致丙氨酸、甘氨酸和组氨酸tRNA合成酶进行特异性氨酰化。对氨酰化动力学的分析表明,对于丙氨酸系统,合成酶与tRNA相互作用提供的大部分过渡态稳定作用可通过合成酶与其极简主义四环底物中的核苷酸相互作用再现。在这项工作的扩展中,我们还观察到基于蛋氨酸tRNA接受茎序列的RNA四环被I类蛋氨酸tRNA合成酶特异性氨酰化。因此,结果展示了四个不同的例子,其中特异性氨酰化由RNA螺旋不到半圈中包含的序列/结构指导。

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