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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Intramolecular dynamics and conformational transition in proteins studied by biophysical labelling methods. Common and specific features of proteins from thermophylic micro-organisms [Review]
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Intramolecular dynamics and conformational transition in proteins studied by biophysical labelling methods. Common and specific features of proteins from thermophylic micro-organisms [Review]

机译:通过生物物理标记方法研究的蛋白质中的分子内动力学和构象转变。嗜热微生物蛋白质的共同特征和特殊特征[综述]

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A general survey is carried out on the theoretical grounds for methods of spin, luminescence and Mossbauer labels, as well as their application in the study of protein intramolecular dynamics. When combined, these methods allow the protein dynamics to be investigated within a wide range of correlation times (tau(c) = 10(2)-10(-10) s) and amplitudes. The purposeful application of the methods to various proteins at different temperatures (30-330 K), water content, substrate addition, etc., revealed a number of dynamical processes and conformational transitions in proteins. The experiments indicated correlations between the local segmental mobility of protein globules in a nanosecond temporal scale and biochemical reactions, such as long-distance electron transfer, hydrolysis and photoreactions. The biophysical labelling methods results were analysed together with the data on dynamics obtained using complementary physico-chemical methods and theoretical calculations. Special emphasis is given to recent results on proteins from thermophylic micro-organisms. The mechanisms of protein intramolecular dynamics and their role in the stability and functions of proteins and enzymes are discussed. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 129]
机译:在理论上对自旋,发光和Mossbauer标记的方法及其在蛋白质分子内动力学研究中的应用进行了全面的调查。当结合使用这些方法时,可以在广泛的相关时间(tau(c)= 10(2)-10(-10)s)和振幅范围内研究蛋白质动力学。该方法在不同温度(30-330 K),水含量,底物添加等条件下对各种蛋白质的有目的应用揭示了蛋白质中的许多动力学过程和构象转变。实验表明,在纳秒级的时间尺度上,蛋白质小球的局部节段迁移率与生物化学反应之间存在相关性,例如长距离电子转移,水解和光反应。分析了生物物理标记方法的结果,以及使用补充物理化学方法和理论计算获得的动力学数据。特别关注来自嗜热微生物的蛋白质的最新结果。讨论了蛋白质分子内动力学的机制及其在蛋白质和酶的稳定性和功能中的作用。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:129]

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