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在模型跨膜螺旋存在的情况下脂质翻转的分子模拟。

Molecular simulations of lipid flip-flop in the presence of model transmembrane helices.

机构信息

Department of Biological Sciences, University of Calgary, 2500 University Drive, Calgary, Alberta T2N 1N4, Canada.

出版信息

Biochemistry. 2010 Sep 7;49(35):7665-73. doi: 10.1021/bi100878q.

Abstract

The transport of lipids between membrane leaflets, also known as flip-flop, is a key process in regulating the lipid composition of biological membranes. It is also important for the growth of biogenic membranes that are the site for lipid synthesis. It has been shown that the mere presence of transmembrane alpha-helical peptides or proteins enhances the rate lipid flip-flop [Kol et al. (2001) Biochemistry 40, 10500-10506]. Using computational models of natural phospholipids with different headgroups, we calculated the free energy profiles for transferring single phospholipids from bulk water to the center of a dioleylphosphatidylcholine (DOPC) bilayer in the presence of transmembrane helices. The free energy barrier for phosphatidylethanolamine (PE) and phosphatidylglycerol (PG) flip-flop decreased by a few kilojoules per mole when a WALP23 or KALP23 peptide was present in the membrane, while the barrier for PC was not affected. We observed large bilayer deformations during lipid flip-flop when the hydrophilic headgroup is in the hydrophobic interior of the bilayer. The presence of KALP23 or WALP23 decreased the size and stability of these defects, suggesting integral membrane proteins affect the mechanism of flip-flop. There was a large decrease in the free energy of desorption for PE and PG when transmembrane peptides were present. This suggests specific PE and PG interactions with the peptide have a large affect on their stability in the membrane, with implications on cellular lipid and protein trafficking.

摘要

脂质在膜双层之间的转运,也称为翻转,是调节生物膜脂质组成的关键过程。它对于生物膜的生长也很重要,生物膜是脂质合成的场所。已经表明,跨膜α-螺旋肽或蛋白质的存在仅增强了脂质翻转的速率[Kol 等人。(2001)生物化学 40,10500-10506]。使用具有不同头基的天然磷脂的计算模型,我们计算了将单个磷脂从本体水转移到二油酰基磷脂酰胆碱(DOPC)双层中心的自由能曲线,在存在跨膜螺旋的情况下。当 WALP23 或 KALP23 肽存在于膜中时,磷脂酰乙醇胺(PE)和磷脂酰甘油(PG)翻转的自由能屏障降低了几个千焦每摩尔,而 PC 的屏障不受影响。当亲水头基位于双层的疏水区时,我们在脂质翻转过程中观察到了大的双层变形。KALP23 或 WALP23 的存在减小了这些缺陷的大小和稳定性,表明完整的膜蛋白会影响翻转机制。当存在跨膜肽时,PE 和 PG 的解吸自由能会大大降低。这表明 PE 和 PG 与肽的特定相互作用对它们在膜中的稳定性有很大影响,这对细胞脂质和蛋白质运输有影响。

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