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首页> 外文期刊>Proteins: Structure, Function, and Genetics >The thermal adaptation of the nitrogenase Fe protein from thermophilic Methanobacter thermoautotrophicus.
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The thermal adaptation of the nitrogenase Fe protein from thermophilic Methanobacter thermoautotrophicus.

机译:嗜热嗜甲烷甲烷杆菌自养氮酶Fe蛋白的热适应。

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摘要

The nitrogenase Fe protein is a key component of the biochemical machinery responsible for the process of biological nitrogen fixation. The Fe protein is a member of a class of nucleotide-binding proteins that couple the binding and hydrolysis of nucleoside triphosphates to conformational changes. The nucleotide-dependent conformational changes modulate the formation of a macromolecular complex, and some members of the class include Galpha, EF-Tu, and myosin. The members of this class are highly interesting model systems for the analysis of aspects of thermal adaptability, since their mechanisms involve protein conformational change and protein-protein interactions. In this study, we have used our extensive knowledge of the structure of the Azotobacter vinelandii nitrogenase Fe protein in multiple structural conformations, and standard homology modeling approaches have been used to generate reliable models of the Fe protein from thermophilic Methanobacter thermoautotrophicus in the analogous structuralconformations. The resulting structural comparison reveals that thermal adaptation of the M. thermoautotrophicus Fe protein is conferred by a number of factors, including increased structural rigidity that results from various structural changes within the protein interior. The analysis of hypothetical docking models and nitrogenase complex structures provides insights into the thermal adaptation of the protein-protein interactions that support macromolecular complex formation and catalysis at higher temperatures.
机译:固氮酶Fe蛋白是负责生物固氮过程的生化机制的关键组成部分。 Fe蛋白是一类核苷酸结合蛋白的成员,该蛋白将核苷三磷酸的结合和水解与构象变化耦合在一起。核苷酸依赖性的构象变化调节大分子复合物的形成,该类的一些成员包括Galpha,EF-Tu和肌球蛋白。此类成员是用于分析热适应性方面的非常有趣的模型系统,因为它们的机制涉及蛋白质构象变化和蛋白质-蛋白质相互作用。在这项研究中,我们利用了我们的葡萄固氮菌氮酶Fe蛋白在多种结构构象中的广泛知识,并且使用标准同源性建模方法从嗜热甲烷杆菌嗜热自养菌中以类似的结构构象生成了可靠的Fe蛋白模型。所得的结构比较表明,热自养分枝杆菌Fe蛋白质的热适应性受多种因素影响,包括因蛋白质内部各种结构变化而导致的结构刚度增加。假设的对接模型和固氮酶复合物结构的分析提供了对蛋白质-蛋白质相互作用的热适应性的见解,这些相互作用支持在高温下大分子复合物的形成和催化。

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