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首页> 外文期刊>Journal of Molecular Biology >Crystal Structure of the Wild-Type Human GIyRS Bound with tRNA (GIY) in a Productive Conformation
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Crystal Structure of the Wild-Type Human GIyRS Bound with tRNA (GIY) in a Productive Conformation

机译:生产型构型与tRNA(GIY)绑定的野生型人GIyRS的晶体结构。

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摘要

Aminoacyl-tRNA synthetases are essential components of the protein translational machinery in all living species, among which the human glycyl-tRNA synthetase (hGIyRS) is of great research interest because of its unique species-specific aminoacylation properties and noncanonical roles in the Charcot Marie Tooth neurological disease. However, the molecular mechanisms of how the enzyme carries out its classical and alternative functions are not well understood. Here, we report a complex structure of the wild-type hGIyRS bound with tRNA(GIY) at 2.95 angstrom. In the complex, the flexible Whep-TRS domain is visible in one of the subunits of the enzyme dimer, and the tRNA molecule is also completely resolved. At the active site, a glycyl-AMP molecule is synthesized and is waiting for the transfer of the glycyl moiety to occur. This cocrystal structure provides us with new details about the recognition mechanism in the intermediate stage during glycylation, which was not well elucidated in the previous crystal structures where the inhibitor AMPPNP was used for crystallization. More importantly, the structural and biochemical work conducted in the current and previous studies allows us to build a model of the full-length hGIyRS in complex with tRNAGIY, which greatly helps us to understand the roles that insertions and the Whep-TRS domain play in the tRNA-binding process. Finally, through structure comparison with other class II aminoacyl-tRNA synthetases bound with their tRNA substrates, we found some commonalities of the aminoacylation mechanism between these enzymes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:氨酰基-tRNA合成酶是所有生物物种蛋白质转化机制的重要组成部分,其中人类糖基-tRNA合成酶(hGIyRS)由于其独特的物种特异性氨基酰化性质和在Charcot Marie牙中的非规范作用而备受关注。神经系统疾病。但是,关于该酶如何实现其经典功能和替代功能的分子机制尚不清楚。在这里,我们报道了在2.95埃处与tRNA(GIY)结合的野生型hGIyRS的复杂结构。在复合物中,柔性的Whep-TRS结构域在酶二聚体的一个亚基中可见,并且tRNA分子也被完全解析。在活性位点,合成了糖基-AMP分子,并等待发生糖基部分的转移。这种共晶结构为我们提供了有关糖基化中间阶段识别机制的新细节,而在以前使用抑制剂AMPPNP进行结晶的晶体结构中并未对此进行很好的阐明。更重要的是,当前和先前研究中进行的结构和生化研究使我们能够构建与tRNAGIY结合的全长hGIyRS模型,这极大地帮助我们了解了插入和Whep-TRS结构域在其中的作用。 tRNA结合过程。最后,通过与与其tRNA底物结合的其他II类氨酰基-tRNA合成酶的结构比较,我们发现了这些酶之间的氨基酰化机理的一些共性。 (C)2016 Elsevier Ltd.保留所有权利。

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