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通过一种膜不透性荧光聚乙二醇衍生化胆固醇监测富含胆固醇的膜结构域的分布与转运。

Distribution and transport of cholesterol-rich membrane domains monitored by a membrane-impermeant fluorescent polyethylene glycol-derivatized cholesterol.

作者信息

Sato Satoshi B, Ishii Kumiko, Makino Asami, Iwabuchi Kazuhisa, Yamaji-Hasegawa Akiko, Senoh Yukiko, Nagaoka Isao, Sakuraba Hitoshi, Kobayashi Toshihide

机构信息

RIKEN, Wako, Saitama 351-0198, Japan.

出版信息

J Biol Chem. 2004 May 28;279(22):23790-6. doi: 10.1074/jbc.M313568200. Epub 2004 Mar 16.

Abstract

Cholesterol-rich membrane domains function in various membrane events as diverse as signal transduction and membrane traffic. We studied the interaction of a fluorescein ester of polyethylene glycol-derivatized cholesterol (fPEG-Chol) with cholesterol-rich membranes both in cells and in model membranes. Unlike filipin and other cholesterol probes, this molecule could be applied as an aqueous dispersion to various samples. When added to live cells, fPEG-Chol distributed exclusively in the outer plasma membrane leaflet and was enriched in microdomains that dynamically clustered by the activation of receptor signaling. The surface-bound fPEG-Chol was slowly internalized via clathrin-independent pathway into endosomes together with lipid raft markers. Noteworthy, fPEG-Chol could be microinjected in the living cells in which we found Golgi apparatus as the sole major organelle to be labeled. PEG-Chol, thus, provides a novel, sensitive probe for unraveling the dynamics of cholesterol-rich microdomains in living cells.

摘要

富含胆固醇的膜结构域在各种膜相关事件中发挥作用,这些事件涵盖信号转导和膜运输等多个方面。我们研究了聚乙二醇衍生化胆固醇的荧光素酯(fPEG-Chol)在细胞和模型膜中与富含胆固醇的膜之间的相互作用。与制霉菌素和其他胆固醇探针不同,该分子可以以水分散体的形式应用于各种样品。当添加到活细胞中时,fPEG-Chol仅分布在外质膜小叶中,并富集于通过受体信号激活而动态聚集的微结构域中。表面结合的fPEG-Chol通过非网格蛋白依赖途径缓慢内化到内体中,同时伴有脂筏标记物。值得注意的是,fPEG-Chol可以微注射到活细胞中,我们发现高尔基体是唯一被标记的主要细胞器。因此,PEG-Chol为揭示活细胞中富含胆固醇的微结构域的动态变化提供了一种新型、灵敏的探针。

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