Restricted Surface Diffusion of Cytochromes on Bioenergetic Membranes with Anionic Lipids.

IF 3.3 4区 工程技术 Q2 CHEMISTRY, PHYSICAL
Aaron Chan, Emad Tajkhorshid
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引用次数: 0

Abstract

Bioenergetic membranes of mitochondria, thylakoids, and chromatophores are primary sites of ATP production in living cells. These membranes contain an electron transport chain (ETC) in which electrons are shuttled between a series of redox proteins during the generation of ATP via oxidative phosphorylation. The phospholipid composition of these membranes, which often include negative lipids, plays a role in determining the electrostatics of their surface owing to the spatial distribution of their charged head groups. Cardiolipin (CDL) is a phospholipid commonly associated with bioenergetic membranes and is also a significant contributor to the negative surface charge. Interactions between cytochromes and phospholipid head groups in the membrane can in principle affect the rate of its travel between ETC components, hence influencing the rate of ATP turnover. Here, we use molecular dynamic (MD) simulations that feature an accelerated membrane model, termed highly mobile membrane mimetic (HMMM), to study protein-lipid interactions during the diffusion of cytochrome c2 between redox partners in a bioenergetic membrane. We observe a "skipping" mode of diffusion for cytochromes along with a bias for binding to anionic lipids, particularly with a strong preference for CDL. During diffusion, cytochrome c2 maintains a relatively fixed tilt with respect to the membrane normal with wider fluctuations in its angle with respect to the plane of the membrane. The obtained results describing the behavior of cytochrome c2 on a representative bioenergetic membrane have direct ramifications in shuttling motions of other similar electron-carrying elements in other bioenergetic membranes, which are composed of a significant amount of anionic lipids. The mode of surface-restricted diffusion reported here would modulate rapid electron transfer between the ETC complexes anchored in bioenergetic membranes by reducing the search space between them.

细胞色素在阴离子脂质生物能膜上受限制的表面扩散。
线粒体、类囊体和染色质的生物能膜是活细胞中ATP产生的主要部位。这些膜包含一个电子传递链(ETC),在通过氧化磷酸化产生ATP的过程中,电子在一系列氧化还原蛋白之间穿梭。这些膜的磷脂组成,通常包括负脂质,由于其带电头基团的空间分布,在决定其表面静电方面起作用。心磷脂(CDL)是一种通常与生物能膜相关的磷脂,也是负表面电荷的重要贡献者。细胞膜中细胞色素与磷脂头基团之间的相互作用原则上可以影响其在ETC组分之间的移动速率,从而影响ATP的周转速率。在这里,我们使用分子动力学(MD)模拟,以加速膜模型为特征,称为高移动膜模拟(HMMM),研究细胞色素c2在生物能膜中氧化还原伙伴之间扩散过程中的蛋白质-脂质相互作用。我们观察到细胞色素的“跳跃”扩散模式以及与阴离子脂质结合的偏见,特别是对CDL的强烈偏好。在扩散过程中,细胞色素c2相对于膜法向保持相对固定的倾斜,相对于膜平面的角度波动较大。所获得的描述细胞色素c2在具有代表性的生物能膜上的行为的结果,直接影响了其他类似的载电子元素在其他生物能膜上的穿梭运动,这些膜由大量的阴离子脂质组成。本文报道的表面限制扩散模式将通过减少它们之间的搜索空间来调节锚定在生物能膜上的ETC复合物之间的快速电子转移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Membranes
Membranes Chemical Engineering-Filtration and Separation
CiteScore
6.10
自引率
16.70%
发文量
1071
审稿时长
11 weeks
期刊介绍: Membranes (ISSN 2077-0375) is an international, peer-reviewed open access journal of separation science and technology. It publishes reviews, research articles, communications and technical notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. Full experimental and/or methodical details must be provided.
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