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Selective binding of perfringolysin O derivative to cholesterol-rich membrane microdomains (rafts)

机译:穿孔球菌溶血素O衍生物与多肽的选择性结合 富含胆固醇的膜微区(筏)

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摘要

There is increasing evidence that sphingolipid- and cholesterol-rich microdomains (rafts) exist in the plasma membrane. Specific proteins assemble in these membrane domains and play a role in signal transduction and many other cellular events. Cholesterol depletion causes disassembly of the raft-associated proteins, suggesting an essential role of cholesterol in the structural maintenance and function of rafts. However, no tool has been available for the detection and monitoring of raft cholesterol in living cells. Here we show that a protease-nicked and biotinylated derivative (BCθ) of perfringolysin O (θ-toxin) binds selectively to cholesterol-rich microdomains of intact cells, the domains that fulfill the criteria of rafts. We fractionated the homogenates of nontreated and Triton X-100-treated platelets after incubation with BCθ on a sucrose gradient. BCθ was predominantly localized in the floating low-density fractions (FLDF) where cholesterol, sphingomyelin, and Src family kinases are enriched. Immunoelectron microscopy demonstrated that BCθ binds to a subpopulation of vesicles in FLDF. Depletion of 35% cholesterol from platelets with cyclodextrin, which accompanied 76% reduction in cholesterol from FLDF, almost completely abolished BCθ binding to FLDF. The staining patterns of BCθ and filipin in human epidermoid carcinoma A431 cells with and without cholesterol depletion suggest that BCθ binds to specific membrane domains on the cell surface, whereas filipin binding is indiscriminate to cell cholesterol. Furthermore, BCθ binding does not cause any damage to cell membranes, indicating that BCθ is a useful probe for the detection of membrane rafts in living cells.
机译:越来越多的证据表明,质膜中存在富含鞘脂和胆固醇的微区(筏)。特定的蛋白质在这些膜结构域中组装,并在信号转导和许多其他细胞事件中起作用。胆固醇的消耗导致与筏相关的蛋白质的解体,表明胆固醇在筏的结构维持和功能中的重要作用。但是,尚无可用于检测和监测活细胞中筏胆固醇的工具。在这里,我们显示了穿孔球菌溶血素O(θ毒素)的蛋白酶切割和生物素化衍生物(BCθ)选择性结合完整细胞的富含胆固醇的微域,这些域符合筏的标准。在蔗糖梯度上与BCθ孵育后,我们将未处理的血小板和Triton X-100处理过的血小板的匀浆物分级分离。 BCθ主要位于漂浮的低密度馏分(FLDF)中,其中胆固醇,鞘磷脂和Src家族激酶富集。免疫电子显微镜显示BCθ与 FLDF中的囊泡亚群。消耗35%的胆固醇 含环糊精的血小板减少了76% FLDF中的胆固醇,几乎完全消除了BCθ与 FLDF。人表皮样细胞中BCθ和菲林的染色模式 有和没有胆固醇消耗的癌细胞A431提示 BCθ与细胞表面特定的膜结构域结合, 而菲律宾血脂则不区分细胞胆固醇。 此外,BCθ结合不会对细胞膜造成任何损害, 表明BCθ是检测膜的有用探针 活细胞中的木筏。

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