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细胞膜曲率和 pH 值对单个细胞色素 bo 酶质子泵活性的影响。

Effects of membrane curvature and pH on proton pumping activity of single cytochrome bo enzymes.

机构信息

School of Biomedical Sciences, University of Leeds, LS2 9JT Leeds, UK.

School of Chemistry, University of Leeds, LS2 9JT Leeds, UK.

出版信息

Biochim Biophys Acta Bioenerg. 2017 Sep;1858(9):763-770. doi: 10.1016/j.bbabio.2017.06.003. Epub 2017 Jun 17.

DOI:10.1016/j.bbabio.2017.06.003
PMID:28634030
Abstract

The molecular mechanism of proton pumping by heme-copper oxidases (HCO) has intrigued the scientific community since it was first proposed. We have recently reported a novel technology that enables the continuous characterisation of proton transport activity of a HCO and ubiquinol oxidase from Escherichia coli, cytochrome bo, for hundreds of seconds on the single enzyme level (Li et al. J Am Chem Soc 137 (2015) 16055-16063). Here, we have extended these studies by additional experiments and analyses of the proton transfer rate as a function of proteoliposome size and pH at the N- and P-side of single HCOs. Proton transport activity of cytochrome bo was found to decrease with increased curvature of the membrane. Furthermore, proton uptake at the N-side (proton entrance) was insensitive to pH between pH6.4-8.4, while proton release at the P-side had an optimum pH of ~7.4, suggesting that the pH optimum is related to proton release from the proton exit site. Our previous single-enzyme experiments identified rare, long-lived conformation states of cytochrome bo where protons leak back under turn-over conditions. Here, we analyzed and found that ~23% of cytochrome bo proteoliposomes show ΔpH half-lives below 50s after stopping turnover, while only ~5% of the proteoliposomes containing a non-pumping mutant, E286C cytochrome bo exhibit such fast decays. These single-enzyme results confirm our model in which HCO exhibit heterogeneous pumping rates and can adopt rare leak states in which protons are able to rapidly flow back.

摘要

自从首次提出以来,血红素铜氧化酶(HCO)的质子泵浦分子机制一直令科学界着迷。我们最近报道了一种新技术,该技术能够在单个酶水平上连续数百秒对大肠杆菌的 HCO 和泛醌氧化酶、细胞色素 bo 的质子转运活性进行连续表征(Li 等人,J Am Chem Soc 137(2015)16055-16063)。在这里,我们通过额外的实验和对质子转移速率作为单个 HCO 的 N 和 P 侧的脂质体大小和 pH 的函数的分析,扩展了这些研究。发现细胞色素 bo 的质子转运活性随膜曲率的增加而降低。此外,N 侧(质子进入)的质子摄取对 pH6.4-8.4 之间的 pH 不敏感,而 P 侧的质子释放在 pH~7.4 时有最佳 pH,这表明 pH 最佳值与质子从质子出口位点释放有关。我们之前的单酶实验确定了细胞色素 bo 中质子泄漏回周转条件下的罕见、长寿命构象状态。在这里,我们进行了分析并发现,在停止周转后,约 23%的细胞色素 bo 脂质体的 ΔpH 半衰期低于 50s,而仅约 5%的含有非泵送突变体 E286C 细胞色素 bo 的脂质体表现出如此快速的衰减。这些单酶结果证实了我们的模型,即 HCO 表现出异质的泵送速率,并能采用罕见的泄漏状态,质子能够在其中快速回流。

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