首页    期刊浏览 2025年04月12日 星期六
登录注册

文章基本信息

  • 标题:Cavity hydration dynamics in cytochrome c oxidase and functional implications
  • 本地全文:下载
  • 作者:Chang Yun Son ; Arun Yethiraj ; Qiang Cui
  • 期刊名称:Proceedings of the National Academy of Sciences
  • 印刷版ISSN:0027-8424
  • 电子版ISSN:1091-6490
  • 出版年度:2017
  • 卷号:114
  • 期号:42
  • 页码:E8830-E8836
  • DOI:10.1073/pnas.1707922114
  • 语种:English
  • 出版社:The National Academy of Sciences of the United States of America
  • 摘要:Cytochrome c oxidase (CcO) is a transmembrane protein that uses the free energy of O2 reduction to generate the proton concentration gradient across the membrane. The regulation of competitive proton transfer pathways has been established to be essential to the vectorial transport efficiency of CcO, yet the underlying mechanism at the molecular level remains lacking. Recent studies have highlighted the potential importance of hydration-level change in an internal cavity that connects the proton entrance channel, the site of O2 reduction, and the putative proton exit route. In this work, we use atomistic molecular dynamics simulations to investigate the energetics and timescales associated with the volume fluctuation and hydration-level change in this central cavity. Extensive unrestrained molecular dynamics simulations (accumulatively ∼ 4 μ s) and free energy computations for different chemical states of CcO support a model in which the volume and hydration level of the cavity are regulated by the protonation state of a propionate group of heme a3 and, to a lesser degree, the redox state of heme a and protonation state of Glu286. Markov-state model analysis of ∼ 2- μ s trajectories suggests that hydration-level change occurs on the timescale of 100–200 ns before the proton-loading site is protonated. The computed energetic and kinetic features for the cavity wetting transition suggest that reversible hydration-level change of the cavity can indeed be a key factor that regulates the branching of proton transfer events and therefore contributes to the vectorial efficiency of proton transport.
  • 关键词:wetting transition ; proton pumping ; Markov-state models ; metadynamics
国家哲学社会科学文献中心版权所有