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Structure of human tryptophanyl-tRNA synthetase in complex with tRNATrp reveals the molecular basis of tRNA recognition and specificity

机译:人色氨酸-tRNA合成酶与tRNATrp复合的结构揭示了tRNA识别和特异性的分子基础

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摘要

Aminoacyl-tRNA synthetases (aaRSs) are a family of enzymes responsible for the covalent link of amino acids to their cognate tRNAs. The selectivity and species-specificity in the recognitions of both amino acid and tRNA by aaRSs play a vital role in maintaining the fidelity of protein synthesis. We report here the first crystal structure of human tryptophanyl-tRNA synthetase (hTrpRS) in complex with tRNATrp and Trp which, together with biochemical data, reveals the molecular basis of a novel tRNA binding and recognition mechanism. hTrpRS recognizes the tRNA acceptor arm from the major groove; however, the 3' end CCA of the tRNA makes a sharp turn to bind at the active site with a deformed conformation. The discriminator base A73 is specifically recognized by an -helix of the unique N-terminal domain and the anticodon loop by an -helix insertion of the C-terminal domain. The N-terminal domain appears to be involved in Trp activation, but not essential for tRNA binding and acylation. Structural and sequence comparisons suggest that this novel tRNA binding and recognition mechanism is very likely shared by other archaeal and eukaryotic TrpRSs, but not by bacterial TrpRSs. Our findings provide insights into the molecular basis of tRNA specificity andspecies-specificity.
机译:氨酰基-tRNA合成酶(aaRSs)是一类酶,负责氨基酸与其同源tRNA的共价连接。 aaRS识别氨基酸和tRNA的选择性和物种特异性在维持蛋白质合成保真度方面起着至关重要的作用。我们在这里报告人类色氨酸-tRNA合成酶(hTrpRS)与tRNATrp和Trp的复合体的第一个晶体结构,再加上生化数据,揭示了新型tRNA结合和识别机制的分子基础。 hTrpRS从大沟中识别出tRNA受体臂;然而,tRNA的3'端CCA急剧转弯以结合在活性位点处的变形构象。鉴别基A73被独特的N-末端结构域的-螺旋和通过C-末端结构域的-螺旋插入的反密码子环特异性识别。 N末端域似乎参与Trp激活,但不是tRNA结合和酰化所必需的。结构和序列比较表明,这种新的tRNA结合和识别机制很可能与其他古细菌和真核生物TrpRS共有,但细菌TrpRS则没有。我们的发现提供了对tRNA特异性和物种特异性的分子基础的见解。

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