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首页> 外文期刊>Journal of Molecular Biology >Analysis of the open and closed conformations of the GTP-binding protein YsxC from Bacillus subtilis.
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Analysis of the open and closed conformations of the GTP-binding protein YsxC from Bacillus subtilis.

机译:枯草芽孢杆菌GTP结合蛋白YsxC的开放和封闭的构象的分析。

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摘要

Genetic analysis has suggested that the product of the Bacillus subtilis ysxC gene is essential for survival of the microorganism and hence may represent a target for the development of a novel anti-infective agent. B.subtilis YsxC is a member of the translation factor related class of GTPases and its crystal structure has been determined in an apo form and in complex with GDP and GMPPNP/Mg2+. Analysis of these structures has allowed us to examine the conformational changes that occur during the process of nucleotide binding and GTP hydrolysis. These structural changes particularly affect parts of the switch I and switch II region of YsxC, which become ordered and disordered, respectively in the "closed" or "on" GTP-bound state and disordered and ordered, respectively, in the "open" or off results in subtle shifts of residues in the G3 region, at the start of switch II, which serve to optimize the interaction with a key aspartic acid residue. The structural flexibility observed in YsxC is likely to contribute to the role of the protein, possibly allowing transduction of an essential intracellular signal, which may be mediated via interactions with a conserved patch of surface-exposed, basic residues that lies adjacent to the GTP-binding site.
机译:遗传分析表明,枯草芽孢杆菌ysxC基因的产物对于微生物的生存至关重要,因此可能代表了新型抗感染剂的开发目标。枯草芽孢杆菌YsxC是GTPases相关翻译因子类别的成员,其晶体结构以载脂蛋白形式确定,并与GDP和GMPPNP / Mg2 +形成复合物。这些结构的分析使我们能够检查核苷酸结合和GTP水解过程中发生的构象变化。这些结构变化特别影响YsxC的开关I和开关II区域的部分,这些部分分别在“闭合”或“在” GTP绑定状态下变得有序和无序,而在“开路”或“开路”中分别无序和有序。 off导致在开关II的开始处G3区域中的残基发生细微移动,这有助于优化与关键天冬氨酸残基的相互作用。在YsxC中观察到的结构柔韧性可能有助于蛋白质的作用,可能允许转导必要的细胞内信号,该信号可能是通过与邻近GTP-结合位点。

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