首页> 美国卫生研究院文献>The EMBO Journal >Arginine aminoacylation identity is context-dependent and ensured by alternate recognition sets in the anticodon loop of accepting tRNA transcripts.
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Arginine aminoacylation identity is context-dependent and ensured by alternate recognition sets in the anticodon loop of accepting tRNA transcripts.

机译:精氨酸氨基酰化的身份取决于上下文并通过接受tRNA转录物的反密码子环中的替代识别集来确保。

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摘要

Yeast arginyl-tRNA synthetase recognizes the non-modified wild-type transcripts derived from both yeast tRNA(Arg) and tRNA(Asp) with equal efficiency. It discriminates its cognate natural substrate, tRNA(Arg), from non-cognate tRNA(Asp) by a negative discrimination mechanism whereby a single methyl group acts as an anti-determinant. Considering these facts, recognition elements responsible for specific arginylation in yeast have been searched by studying the in vitro arginylation properties of a series of transcripts derived from yeast tRNA(Asp), considered as an arginine isoacceptor tRNA. In parallel, experiments on similar tRNA(Arg) transcripts were performed. Unexpectedly, in the tRNA(Arg) context, arginylation is basically linked to the presence of residue C35, whereas in the tRNA(Asp) context, it is deeply related to that of C36 and G37 but is insensitive to the nucleotide at position 35. Each of these nucleotides present in one host, is absent in the other host tRNA. Thus, arginine identity is dependent on two different specific recognition sets according to the tRNA framework investigated.
机译:酵母精氨酰tRNA合成酶以相同的效率识别源自酵母tRNA(Arg)和tRNA(Asp)的未修饰野生型转录本。它通过否定鉴别机制将其同源天然底物tRNA(Arg)与非同源tRNA(Asp)区别开,其中单个甲基充当抗决定剂。考虑到这些事实,通过研究源自酵母tRNA(Asp)的一系列转录物的体外精氨酸化特性,寻找了负责酵母中特定精氨酰化的识别元件。同时,对相似的tRNA(Arg)转录本进行了实验。出乎意料的是,在tRNA(Arg)的情况下,精氨酰化基本上与残基C35的存在有关,而在tRNA(Asp)的情况下,它与C36和G37的残基密切相关,但对位置35的核苷酸不敏感。一个宿主中存在的这些核苷酸中的每一个,在另一宿主tRNA中均不存在。因此,根据所研究的tRNA框架,精氨酸的身份取决于两个不同的特异性识别集。

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