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通过定点自旋标记探索膜蛋白的局部构象空间。

Exploring the local conformational space of a membrane protein by site-directed spin labeling.

作者信息

Stopar David, Strancar Janez, Spruijt Ruud B, Hemminga Marcus A

机构信息

Biotechnical Faculty, University of Ljubljana, Vecna pot 111, SI-1000 Ljubljana, Slovenia.

出版信息

J Chem Inf Model. 2005 Nov-Dec;45(6):1621-7. doi: 10.1021/ci0501490.

Abstract

Molecular modeling based on a hybrid evolutionary optimization and an information condensation algorithm, called GHOST, of spin label ESR spectra was applied to study the structure and dynamics of membrane proteins. The new method is capable of providing detailed molecular information about the conformational space of the spin-labeled segment of the protein in a membrane system. The method is applied to spin-labeled bacteriophage M13 major coat protein, which is used as a model membrane protein. Single cysteine mutants of the coat protein were labeled with nitroxide spin labels and incorporated in 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC) bilayers. The new computational method allows us to monitor distributions of local spatial constraints and molecular mobility, in addition to information about the location of the protein in a membrane. Furthermore, the results suggest that different local conformations may coexist in the membrane protein. The knowledge of different local conformations may help us to better understand the function-structure relationship of membrane proteins.

摘要

基于混合进化优化和信息凝聚算法(称为GHOST)的自旋标记电子顺磁共振(ESR)光谱分子建模被应用于研究膜蛋白的结构和动力学。这种新方法能够提供关于膜系统中蛋白质自旋标记片段构象空间的详细分子信息。该方法应用于自旋标记的噬菌体M13主要外壳蛋白,其被用作模型膜蛋白。外壳蛋白的单半胱氨酸突变体用氮氧自旋标记进行标记,并掺入1,2-二油酰基-sn-甘油-3-磷酸胆碱(DOPC)双层中。这种新的计算方法除了能提供关于蛋白质在膜中位置的信息外,还能让我们监测局部空间限制和分子流动性的分布。此外,结果表明不同的局部构象可能在膜蛋白中共存。不同局部构象的知识可能有助于我们更好地理解膜蛋白的功能-结构关系。

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