Riznichenko Galina Yu, Kovalenko Ilya B, Abaturova Anna M, Diakonova Alexandra N, Ustinin Dmitry M, Grachev Eugene A, Rubin Andrew B
Dept. of Biophysics, Biology Faculty, M.V. Lomonosov Moscow State University, 119992, Moscow, Russia.
Dept. of Computer Methods in Physics, Physical Faculty, M.V. Lomonosov Moscow State University, Moscow, Russia.
Biophys Rev. 2010 Aug;2(3):101-110. doi: 10.1007/s12551-010-0033-4. Epub 2010 Jun 10.
This review covers the methods of computer simulation of protein interactions taking part in photosynthetic electron transport reactions. A direct multiparticle simulation method that simulates reactions describing interactions of ensembles of molecules in the heterogeneous interior of a cell is developed. In the models, protein molecules move according to the laws of Brownian dynamics, mutually orient themselves in the electrical field, and form complexes in the 3D scene. The method allows us to visualize the processes of molecule interactions and to calculate the rate constants for protein complex formation reactions in the solution and in the photosynthetic membrane. Three-dimensional multiparticle computer models for simulating the complex formation kinetics for plastocyanin with photosystem I and cytochrome bf complex, and ferredoxin with photosystem I and ferredoxin:NADP-reductase are considered. Effects of ionic strength are featured for wild type and mutant proteins. The computer multiparticle models describe nonmonotonic dependences of complex formation rates on the ionic strength as the result of long-range electrostatic interactions.
本综述涵盖了参与光合电子传递反应的蛋白质相互作用的计算机模拟方法。开发了一种直接多粒子模拟方法,用于模拟描述细胞异质内部分子集合相互作用的反应。在模型中,蛋白质分子根据布朗动力学定律移动,在电场中相互定向,并在三维场景中形成复合物。该方法使我们能够可视化分子相互作用过程,并计算溶液和光合膜中蛋白质复合物形成反应的速率常数。考虑了用于模拟质体蓝素与光系统I和细胞色素bf复合物、铁氧化还原蛋白与光系统I和铁氧化还原蛋白:NADP还原酶形成复合物动力学的三维多粒子计算机模型。研究了野生型和突变型蛋白质的离子强度效应。计算机多粒子模型描述了由于长程静电相互作用,复合物形成速率对离子强度的非单调依赖性。