首页> 外文期刊>Journal of Molecular Biology >Use of analogues of methionine and methionyl adenylate to sample conformational changes during catalysis in Escherichia coli methionyl-tRNA synthetase.
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Use of analogues of methionine and methionyl adenylate to sample conformational changes during catalysis in Escherichia coli methionyl-tRNA synthetase.

机译:甲硫氨酸和甲硫氨酸腺苷酸的类似物在大肠杆菌甲硫氨酸-tRNA合成酶催化过程中的样品构象变化中的应用。

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摘要

Binding of methionine to methionyl-tRNA synthetase (MetRS) is known to promote conformational changes within the active site. However, the contribution of these rearrangements to enzyme catalysis is not fully understood. In this study, several methionine and methionyl adenylate analogues were diffused into crystals of the monomeric form of Escherichia coli methionyl-tRNA synthetase. The structures of the corresponding complexes were solved at resolutions below 1.9A and compared to those of the enzyme free or complexed with methionine. Residues Y15 and W253 play key roles in the strength of the binding of the amino acid and of its analogues. Indeed, full motions of these residues are required to recover the maximum in free energy of binding. Residue Y15 also controls the size of the hydrophobic pocket where the amino acid side-chain interacts. H301 appears to participate to the specific recognition of the sulphur atom of methionine. Complexes with methionyl adenylate analogues illustrate the shielding by MetRS of the region joining the methionine and adenosine moieties. Finally, the structure of MetRS complexed to a methionine analogue mimicking the tetrahedral carbon of the transition state in the aminoacylation reaction was solved. On the basis of this model, we propose that, in response to the binding of the 3'-end of tRNA, Y15 moves again in order to deshield the anhydride bond in the natural adenylate.
机译:已知蛋氨酸与蛋氨酸-tRNA合成酶(MetRS)的结合可促进活性位点内的构象变化。但是,这些重排对酶催化的贡献尚不完全清楚。在这项研究中,几个蛋氨酸和蛋氨酸腺苷酸类似物被扩散到大肠杆菌蛋氨酸-tRNA合成酶单体形式的晶体中。以低于1.9A的分辨率解析相应复合物的结构,并将其与不含或与蛋氨酸复合的酶进行比较。残基Y15和W253在氨基酸及其类似物的结合强度中起关键作用。实际上,需要这些残基的完整运动以恢复结合自由能的最大值。残基Y15还控制氨基酸侧链相互作用的疏水口袋的大小。 H301似乎参与了蛋氨酸硫原子的特异性识别。与甲硫基腺苷酸类似物的配合物说明了甲硫氨酸和腺苷部分连接区域被MetRS屏蔽。最后,解决了与蛋氨酸类似物复合的MetRS的结构,该蛋氨酸类似物模拟了氨基酰化反应中过渡态的四面体碳。在此模型的基础上,我们建议,响应tRNA 3'末端的结合,Y15再次移动以使天然腺苷酸中的酸酐键脱保护。

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