首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Exploration of the cytochrome c oxidase pathway puzzle and examination of the origin of elusive mutational effects.
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Exploration of the cytochrome c oxidase pathway puzzle and examination of the origin of elusive mutational effects.

机译:探索细胞色素C氧化酶途径的难题,并探讨难以捉摸的突变效应的起源。

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Gaining detailed understanding of the energetics of the proton-pumping process in cytochrome c oxidase (CcO) is a problem of great current interest. Despite promising mechanistic proposals, so far, a physically consistent model that would reproduce all the relevant barriers needed to create a working pump has not been presented. In addition, there are major problems in elucidating the origin of key mutational effects and in understanding the nature of the apparent pK(a) values associated with the pH dependencies of specific proton transfer (PT) reactions in CcO. This work takes a key step in resolving the above problems, by considering mutations, such as the Asn139Asp replacement, that blocks proton pumping without affecting PT to the catalytic site. We first introduce a formulation that makes it possible to relate the apparent pK(a) of Glu286 to different conformational states of this residue. We then use the new formulation along with the calculated pK(a) values of Glu286 at these different conformations to reproduce the experimentally observed apparent pK(a) of the residue. Next, we take the X-ray structures of the native and Asn139Asp mutant of the Paracoccus denitrificans CcO (N131D in this system) and reproduce for the first time the change in the primary PT pathways (and other key features) based on simulations that start with the observed structural changes. We also consider the competition between proton transport to the catalytic site and the pump site, as a function of the bulk pH, as well as the H/D isotope effect, and use this information to explore the relative height of the two barriers. The paper emphasizes the crucial role of energy-based considerations that include the PT process, and the delicate control of PT in CcO.
机译:对细胞色素C氧化酶(CcO)中质子泵过程的能量学的深入了解是当前引起人们极大关注的问题。尽管提出了有希望的机械建议,但到目前为止,还没有提出一种物理上一致的模型,该模型可以再现制造工作泵所需的所有相关障碍。此外,在阐明关键突变效应的起源以及理解与CcO中特定质子转移(PT)反应的pH依赖性相关的表观pK(a)值的性质方面,还存在重大问题。这项工作是通过解决突变(例如Asn139Asp替换)来解决上述问题的关键步骤,该突变可阻止质子泵送而不会影响到催化位点的PT。我们首先介绍一种使Glu286的表观pK(a)与该残基的不同构象状态相关的制剂。然后,我们在这些不同的构象下使用新配方以及Glu286的pk(a)值,以重现实验观察到的残留pK(a)。接下来,我们采用反硝化副球菌CcO(此系统中为N131D)的天然和Asn139Asp突变体的X射线结构,并基于模拟开始,首次重现主要PT途径(和其他关键特征)的变化。与观察到的结构变化。我们还考虑了质子转运到催化部位和泵部位之间的竞争与整体pH值以及H / D同位素效应之间的关系,并使用此信息来探索两个障碍的相对高度。本文强调基于能量的考虑因素的关键作用,包括PT过程以及CcO中PT的精细控制。

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