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PNAS Plus: Insights into functions of the H channel of cytochrome c oxidase from atomistic molecular dynamics simulations

机译:PNAS Plus:通过原子分子动力学模拟洞察细胞色素C氧化酶H通道的功能

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摘要

Proton pumping A-type cytochrome c oxidase (CcO) terminates the respiratory chains of mitochondria and many bacteria. Three possible proton transfer pathways (D, K, and H channels) have been identified based on structural, functional, and mutational data. Whereas the D channel provides the route for all pumped protons in bacterial A-type CcOs, studies of bovine mitochondrial CcO have led to suggestions that its H channel instead provides this route. Here, we have studied H-channel function by performing atomistic molecular dynamics simulations on the entire, as well as core, structure of bovine CcO in a lipid-solvent environment. The majority of residues in the H channel do not undergo large conformational fluctuations. Its upper and middle regions have adequate hydration and H-bonding residues to form potential proton-conducting channels, and Asp51 exhibits conformational fluctuations that have been observed crystallographically. In contrast, throughout the simulations, we do not observe transient water networks that could support proton transfer from the N phase toward heme a via neutral His413, regardless of a labile H bond between Ser382 and the hydroxyethylfarnesyl group of heme a. In fact, the region around His413 only became sufficiently hydrated when His413 was fixed in its protonated imidazolium state, but its calculated pKa is too low for this to provide the means to create a proton transfer pathway. Our simulations show that the electric dipole moment of residues around heme a changes with the redox state, hence suggesting that the H channel could play a more general role as a dielectric well.
机译:质子泵送A型细胞色素C氧化酶(CcO)终止了线粒体和许多细菌的呼吸链。基于结构,功能和突变数据,已经确定了三种可能的质子转移途径(D,K和H通道)。尽管D通道为细菌A型CcO中的所有泵送质子提供了路径,但是对牛线粒体CcO的研究却提出了一条建议,即其H通道提供了该路径。在这里,我们通过在脂质溶剂环境中对牛CcO的整个结构以及核心结构进行原子分子动力学模拟,研究了H通道功能。 H通道中的大多数残基不经历大的构象波动。它的上部和中部区域具有足够的水合作用和氢键残基以形成潜在的质子传导通道,并且Asp51展现出晶体学上已经观察到的构象波动。相反,在整个模拟过程中,无论Ser382和血红素a的羟乙基法呢基之间是否存在不稳定的H键,我们都没有观察到瞬态水网络可支持质子通过中性His413从N相向血红素a转移。实际上,只有将His413固定在其质子化的咪唑鎓状态下,His413周围的区域才会充分水合,但是其计算出的pKa值太低,无法提供创建质子转移途径的手段。我们的模拟表明,血红素a周围残基的电偶极矩随氧化还原状态而变化,因此表明H通道可以作为介电井发挥更一般的作用。

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