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蛋白质中环已二烯的顺反异构化。

Cis-trans isomerization of omega dihedrals in proteins.

机构信息

INSERM UMR-S 665, Dynamique des Structures et Interactions des Macromolécules Biologiques, Université Denis Diderot-Paris 7, INTS, 6, rue Alexandre Cabanel, 75739 Paris cedex 15, France.

出版信息

Amino Acids. 2013 Aug;45(2):279-89. doi: 10.1007/s00726-013-1511-3. Epub 2013 Jun 1.

Abstract

Peptide bonds in protein structures are mainly found in trans conformation with a torsion angle ω close to 180°. Only a very low proportion is observed in cis conformation with ω angle around 0°. Cis-trans isomerization leads to local conformation changes which play an important role in many biological processes. In this paper, we reviewed the recent discoveries and research achievements in this field. First, we presented some interesting cases of biological processes in which cis-trans isomerization is directly implicated. It is involved in protein folding and various aspect of protein function like dimerization interfaces, autoinhibition control, channel gating, membrane binding. Then we reviewed conservation studies of cis peptide bonds which emphasized evolution constraints in term of sequence and local conformation. Finally we made an overview of the numerous molecular dynamics studies and prediction methodologies already developed to take into account this structural feature in the research area of protein modeling. Many cis peptide bonds have not been recognized as such due to the limited resolution of the data and to the refinement protocol used. Cis-trans proline isomerization reactions represents a vast and promising research area that still needs to be further explored for a better understanding of isomerization mechanism and improvement of cis peptide bond predictions.

摘要

蛋白质结构中的肽键主要以反式构象存在,扭转角ω接近 180°。只有很小一部分以ω角约为 0°的顺式构象存在。顺反异构化导致局部构象变化,在许多生物过程中发挥重要作用。本文综述了该领域的最新发现和研究成果。首先,我们介绍了一些有趣的顺反异构化直接涉及的生物过程的案例。它参与蛋白质折叠和蛋白质功能的各个方面,如二聚化界面、自动抑制控制、通道门控、膜结合。然后,我们回顾了顺式肽键的保守性研究,强调了序列和局部构象方面的进化约束。最后,我们对已经开发的大量分子动力学研究和预测方法进行了概述,以在蛋白质建模研究领域中考虑这种结构特征。由于数据的分辨率有限和使用的精修方案,许多顺式肽键尚未被识别为顺式肽键。脯氨酸顺反异构化反应是一个广阔而有前途的研究领域,仍需要进一步探索,以更好地理解异构化机制和提高顺式肽键预测。

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