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非洲脱硫弧菌细胞色素c3氧化态和还原态的分子动力学研究

Molecular dynamics study of Desulfovibrio africanus cytochrome c3 in oxidized and reduced forms.

作者信息

Bret Céline, Roth Michel, Nørager Sofie, Hatchikian E Claude, Field Martin J

机构信息

Laboratoire de Dynamique Moléculaire, Institut de Biologie Structurale J.P. Ebel, 41 rue Jules Horowitz, 38027 Grenoble Cedex 1, France.

出版信息

Biophys J. 2002 Dec;83(6):3049-65. doi: 10.1016/S0006-3495(02)75310-1.

Abstract

A 5-ns molecular dynamics study of a tetraheme cytochrome in fully oxidized and reduced forms was performed using the CHARMM molecular modeling program, with explicit water molecules, Langevin dynamics thermalization, Particle Mesh Ewald long-range electrostatics, and quantum mechanical determination of heme partial charges. The simulations used, as starting points, crystallographic structures of the oxidized and reduced forms of the acidic cytochrome c(3) from Desulfovibrio africanus obtained at pH 5.6. In this paper we also report structures for the two forms obtained at pH 8. In contrast to previous cytochrome c(3) dynamics simulations, our model is stable. The simulation structures agree reasonably well with the crystallographic ones, but our models show higher flexibility and the water molecules are more labile. We have compared in detail the differences between the simulated and experimental structures of the two redox states and observe that the hydration structure is highly dependent on the redox state. We have also analyzed the interaction energy terms between the hemes, the protein residues, and water. The direct electrostatic interaction between hemes is weak and nearly insensitive to the redox state, but the remaining terms are large and contribute in a complex way to the overall potential energy differences that we see between the redox states.

摘要

使用CHARMM分子模拟程序对完全氧化和还原形式的四血红素细胞色素进行了5纳秒的分子动力学研究,模拟中包含明确的水分子、朗之万动力学热化、粒子网格埃瓦尔德长程静电作用以及血红素部分电荷的量子力学测定。模拟以在pH 5.6条件下获得的来自非洲脱硫弧菌的酸性细胞色素c(3)氧化态和还原态的晶体结构作为起始点。在本文中,我们还报告了在pH 8条件下获得的这两种形式的结构。与之前的细胞色素c(3)动力学模拟不同,我们的模型是稳定的。模拟结构与晶体结构相当吻合,但我们的模型显示出更高的灵活性,且水分子更不稳定。我们详细比较了两种氧化还原状态的模拟结构与实验结构之间的差异,发现水合结构高度依赖于氧化还原状态。我们还分析了血红素、蛋白质残基和水之间的相互作用能项。血红素之间的直接静电相互作用较弱,且几乎对氧化还原状态不敏感,但其余项较大,并以复杂的方式对我们在氧化还原状态之间看到的总势能差异做出贡献。

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