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质子诱导的内吞作用取决于细胞膜流动性、脂相有序性和膜静息电位。

Proton-induced endocytosis is dependent on cell membrane fluidity, lipid-phase order and the membrane resting potential.

作者信息

Ben-Dov Nadav, Korenstein Rafi

机构信息

Department of Physiology and Pharmacology, Faculty of Medicine, Tel-Aviv University, 69978 Tel-Aviv, Israel.

出版信息

Biochim Biophys Acta. 2013 Nov;1828(11):2672-81. doi: 10.1016/j.bbamem.2013.07.027. Epub 2013 Jul 30.

Abstract

Recently it has been shown that decreasing the extracellular pH of cells stimulates the formation of inward membrane invaginations and vesicles, accompanied by an enhanced uptake of macromolecules. This type of endocytosis was coined as proton-induced uptake (PIU). Though the initial induction of inward membrane curvature was rationalized in terms of proton-based increase of charge asymmetry across the membrane, the dependence of the phenomenon on plasma membrane characteristics is still unknown. The present study shows that depolarization of the membrane resting potential elevates PIU by 25%, while hyperpolarization attenuates it by 25%. Comparison of uptake in suspended and adherent cells implicates that the resting-potential affects PIU through remodeling the actin-cytoskeleton. The pH at the external interface of the cell membrane rather than the pH gradient across it determines the extent of PIU. PIU increases linearly upon temperature increase in the range of 4-36°C, in correlation with the membrane fluidity. The plasma membrane fluidity and the lipid phase order are modulated by enriching the cell's membrane with cholesterol, tergitol, dimethylsulfoxide, 6-ketocholestanol and phloretin and by cholesterol depletion. These treatments are shown to alter the extent of PIU and are better correlated with membrane fluidity than with the lipid phase order. We suggest that the lipid phase order and fluidity influence PIU by regulating the lipid order gradient across the perimeter of the lipid-condensed microdomains (rafts) and alter the characteristic tension line that separates the higher ordered lipid-domains from the lesser ordered ones.

摘要

最近有研究表明,降低细胞外pH值会刺激向内的膜内陷和囊泡形成,同时大分子摄取增加。这种内吞作用被称为质子诱导摄取(PIU)。尽管向内的膜曲率的初始诱导可以通过基于质子的跨膜电荷不对称增加来解释,但该现象对质膜特性的依赖性仍然未知。本研究表明,膜静息电位的去极化使PIU升高25%,而超极化使其降低25%。悬浮细胞和贴壁细胞摄取的比较表明,静息电位通过重塑肌动蛋白细胞骨架影响PIU。细胞膜外部界面的pH值而非跨膜的pH梯度决定了PIU的程度。在4-36°C范围内,PIU随温度升高呈线性增加,与膜流动性相关。通过用胆固醇、曲拉通、二甲基亚砜、6-酮胆固醇和根皮素富集细胞膜以及耗尽胆固醇来调节质膜流动性和脂质相序。这些处理显示会改变PIU的程度,并且与膜流动性的相关性比与脂质相序的相关性更好。我们认为,脂质相序和流动性通过调节脂质凝聚微区(筏)周边的脂质序梯度来影响PIU,并改变将较高序脂质域与较低序脂质域分开的特征张力线。

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