描述含蛋白质移动载体的光合电子转移的布朗动力学多粒子模型

Galina Riznichenko, I. Kovalenko
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引用次数: 3

摘要

本文介绍了莫斯科国立罗蒙诺索夫大学生物学院生物物理系开发的利用多粒子布朗动力学方法模拟光合蛋白相互作用的研究进展。作者使用多粒子布朗方法与分子动力学模拟相结合,揭示了静电相互作用和构象变化在植物、绿藻和衣杆菌中电子从细胞色素复合物转移到移动载体质体青素分子中的作用。考虑到光合膜的内部,他们开发了这个模型,结合了蛋白质沿类囊体膜扩散、蛋白质与带膜电荷的蛋白质之间的静电相互作用、多蛋白质复合物的形成、复合物内的电子转移以及复合物的解离等事件。他们还开发了电子受体铁氧还蛋白之间竞争相互作用的多粒子模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiparticle Models of Brownian Dynamics for the Description of Photosynthetic Electron Transfer Involving Protein Mobile Carriers
The article presents a review of modeling the interaction of photosynthetic proteins using the multiparticle Brownian dynamics method developed at the Department of Biophysics, Biological Faculty, Lomonosov Moscow State University. The authors used multiparticle Brownian methods coupled to molecular dynamic simulations to reveal the role of electrostatic interactions and conformational changes in the transfer of an electron from the cytochrome complex to the molecule of the mobile carrier plastocyanin in plants, green algae, and cianobacteria. Taking into account the interior of photosynthetic membrane, they developed the model, combining events of protein diffusion along the thylakoid membrane, electrostatic interactions between proteins and the proteins with the membrane charges, formation of a multiprotein complex, electron transfer within a complex, and complex dissociation. They have also developed multiparticle models of competitive interactions between electron acceptors ferredoxin.
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