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膜界面组成决定单跨膜螺旋蛋白 PMP1 的结构和倾斜:MD 研究。

Membrane interface composition drives the structure and the tilt of the single transmembrane helix protein PMP1: MD studies.

机构信息

Commissariat à l'Énergie Atomique (CEA), Institute of Biology and Technology (iBiTecS), Gif-sur-Yvette, France.

出版信息

Biophys J. 2011 Apr 6;100(7):1660-7. doi: 10.1016/j.bpj.2011.02.002.

Abstract

PMP1, a regulatory subunit of the yeast plasma membrane H(+)-ATPase, is a single transmembrane helix protein. Its cytoplasmic C-terminus possesses several positively charged residues and interacts with phosphatidylserine lipids as shown through both (1)H- and (2)H-NMR experiments. We used all-atom molecular dynamics simulations to obtain atomic-scale data on the effects of membrane interface lipid composition on PMP1 structure and tilt. PMP1 was embedded in two hydrated bilayers, differing in the composition of the interfacial region. The neutral bilayer is composed of POPC (1-palmitoyl-2-oleoyl-3-glycero-phosphatidylcholine) lipids and the negatively charged bilayer is composed of POPC and anionic POPS (1-palmitoyl-2-oleoyl-3-glycero-phosphatidylserine) lipids. Our results were consistent with NMR data obtained previously, such as a lipid sn-2 chain lying on the W28 aromatic ring and in the groove formed on one side of the PMP1 helix. In pure POPC, the transmembrane helix is two residues longer than the initial structure and the helix tilt remains constant at 6 ± 3°. By contrast, in mixed POPC-POPS, the initial helical structure of PMP1 is stable throughout the simulation time even though the C-terminal residues interact strongly with POPS headgroups, leading to a significant increase of the helix tilt within the membrane to 20 ± 5°.

摘要

PMP1 是酵母质膜 H(+)-ATP 酶的调节亚基,是一种单跨膜螺旋蛋白。其细胞质 C 末端带有几个正电荷残基,并与磷脂酰丝氨酸脂质相互作用,这一点通过(1)H 和(2)H-NMR 实验都得到了证实。我们使用全原子分子动力学模拟,获得了关于膜界面脂质组成对 PMP1 结构和倾斜影响的原子尺度数据。PMP1 被嵌入两个水合双层中,界面区域的组成不同。中性双层由 POPC(1-棕榈酰基-2-油酰基-3-甘油磷酸胆碱)脂质组成,而带负电的双层由 POPC 和阴离子 POPS(1-棕榈酰基-2-油酰基-3-甘油磷酸丝氨酸)脂质组成。我们的结果与之前获得的 NMR 数据一致,例如 sn-2 链位于 W28 芳环上,并且位于 PMP1 螺旋一侧形成的凹槽中。在纯 POPC 中,跨膜螺旋比初始结构长两个残基,螺旋倾斜度保持在 6 ± 3°不变。相比之下,在混合的 POPC-POPS 中,即使 C 末端残基与 POPS 头部基团强烈相互作用,导致膜内螺旋倾斜度显著增加到 20 ± 5°,PMP1 的初始螺旋结构在整个模拟时间内都是稳定的。

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