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溶液中质体蓝素与细胞色素f相互作用的直接模拟

Direct simulation of plastocyanin and cytochrome f interactions in solution.

作者信息

Kovalenko I B, Abaturova A M, Gromov P A, Ustinin D M, Grachev E A, Riznichenko G Yu, Rubin A B

机构信息

Biological Faculty, Lomonosov Moscow State University, Leninskie Gory, Moscow 119992, Russia.

出版信息

Phys Biol. 2006 Jun 5;3(2):121-9. doi: 10.1088/1478-3975/3/2/004.

Abstract

Most biological functions, including photosynthetic activity, are mediated by protein interactions. The proteins plastocyanin and cytochrome f are reaction partners in a photosynthetic electron transport chain. We designed a 3D computer simulation model of diffusion and interaction of spinach plastocyanin and turnip cytochrome f in solution. It is the first step in simulating the electron transfer from cytochrome f to photosystem 1 in the lumen of thylakoid. The model is multiparticle and it can describe the interaction of several hundreds of proteins. In our model the interacting proteins are represented as rigid bodies with spatial fixed charges. Translational and rotational motion of proteins is the result of the effect of stochastic Brownian force and electrostatic force. The Poisson-Boltzmann formalism is used to determine the electrostatic potential field generated around the proteins. Using this model we studied the kinetic characteristics of plastocyanin-cytochrome f complex formation for plastocyanin mutants at pH 7 and a variety of ionic strength values.

摘要

大多数生物学功能,包括光合活性,都是由蛋白质相互作用介导的。质体蓝素和细胞色素f是光合电子传递链中的反应伙伴。我们设计了一个菠菜质体蓝素和芜菁细胞色素f在溶液中扩散和相互作用的三维计算机模拟模型。这是模拟类囊体腔中细胞色素f向光系统1电子转移的第一步。该模型是多粒子的,能够描述数百种蛋白质的相互作用。在我们的模型中,相互作用的蛋白质被表示为具有空间固定电荷的刚体。蛋白质的平移和旋转运动是随机布朗力和静电力作用的结果。泊松-玻尔兹曼形式被用于确定蛋白质周围产生的静电势场。利用这个模型,我们研究了在pH值为7和各种离子强度值下质体蓝素突变体质体蓝素-细胞色素f复合物形成的动力学特征。

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