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整合膜蛋白的脂-蛋白相互作用:一项比较模拟研究。

Lipid-protein interactions of integral membrane proteins: a comparative simulation study.

作者信息

Deol Sundeep S, Bond Peter J, Domene Carmen, Sansom Mark S P

机构信息

Department of Biochemistry, and Physical and Theoretical Chemistry Laboratory, University of Oxford, Oxford, United Kingdom.

出版信息

Biophys J. 2004 Dec;87(6):3737-49. doi: 10.1529/biophysj.104.048397. Epub 2004 Oct 1.

Abstract

The interactions between membrane proteins and their lipid bilayer environment play important roles in the stability and function of such proteins. Extended (15-20 ns) molecular dynamics simulations have been used to explore the interactions of two membrane proteins with phosphatidylcholine bilayers. One protein (KcsA) is an alpha-helix bundle and embedded in a palmitoyl oleoyl phosphatidylcholine bilayer; the other (OmpA) is a beta-barrel outer-membrane protein and is in a dimyristoyl phosphatidylcholine bilayer. The simulations enable analysis in detail of a number of aspects of lipid-protein interactions. In particular, the interactions of aromatic amphipathic side chains (i.e., Trp, Tyr) with lipid headgroups, and "snorkeling" interactions of basic side chains (i.e., Lys, Arg) with phosphate groups are explored. Analysis of the number of contacts and of H-bonds reveal fluctuations on an approximately 1- to 5-ns timescale. There are two clear bands of interacting residues on the surface of KcsA, whereas there are three such bands on OmpA. A large number of Arg-phosphate interactions are seen for KcsA; for OmpA, the number of basic-phosphate interactions is smaller and shows more marked fluctuations with respect to time. Both classes of interaction occur in clearly defined interfacial regions of width approximately 1 nm. Analysis of lateral diffusion of lipid molecules reveals that "boundary" lipid molecules diffuse at about half the rate of bulk lipid. Overall, these simulations present a dynamic picture of lipid-protein interactions: there are a number of more specific interactions but even these fluctuate on an approximately 1- to 5-ns timescale.

摘要

膜蛋白与其脂质双层环境之间的相互作用在这类蛋白的稳定性和功能中发挥着重要作用。已利用长时间(15 - 20纳秒)的分子动力学模拟来探究两种膜蛋白与磷脂酰胆碱双层的相互作用。一种蛋白(KcsA)是α - 螺旋束,嵌入在棕榈酰油酰磷脂酰胆碱双层中;另一种(OmpA)是β - 桶状外膜蛋白,处于二肉豆蔻酰磷脂酰胆碱双层中。这些模拟能够详细分析脂质 - 蛋白相互作用的多个方面。特别地,探究了芳香族两亲性侧链(即色氨酸、酪氨酸)与脂质头部基团的相互作用,以及碱性侧链(即赖氨酸、精氨酸)与磷酸基团的“潜泳”相互作用。对接触数和氢键的分析揭示了在大约1到5纳秒时间尺度上的波动。在KcsA表面有两条明显的相互作用残基带,而在OmpA表面有三条这样的带。在KcsA中观察到大量的精氨酸 - 磷酸相互作用;对于OmpA,碱性 - 磷酸相互作用的数量较少,并且相对于时间显示出更明显的波动。这两类相互作用都发生在宽度约为1纳米的明确界定的界面区域。对脂质分子横向扩散的分析表明,“边界”脂质分子的扩散速率约为主体脂质的一半。总体而言,这些模拟呈现了脂质 - 蛋白相互作用的动态图景:存在许多更具体的相互作用,但即使这些相互作用也在大约1到5纳秒的时间尺度上波动。

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