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Detergent-resistant membranes in human erythrocytes and their connection to the membrane-skeleton

机译:人红细胞中耐洗涤剂的膜及其与膜骨架的联系

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In cell membranes, local inhomogeneity in the lateral distribution of lipids and proteins is thought to exist in vivo in the form of lipid 'rafts', microdomains enriched in cholesterol and sphingolipids, and in specific classes of proteins, that appear to play specialized roles for signal transduction, cell-cell recognition, parasite or virus infection, and vesicular trafficking. These structures are operationally defined as membranes resistant to solubili-zation by nonionic detergents at 4℃ (detergent-resistant membranes, DRMs). This definition appears to be necessary and sufficient, although additional manoeuvres, not always described with sufficient detail, may be needed to ensure isolation of DRMs, like mechanical homogenization, and changes in the pH and/or ionic strength of the solubilization medium. We show here for the human erythrocyte that the different conditions adopted may lead to the isolation of qualitatively and quantitatively different DRM fractions, thus contributing to the complexity of the notion itself of lipid raft. A significant portion of erythrocyte DRMs enriched in reported lipid raft markers, such as flotillin-1, flotillin-2 and GM_1, is anchored to the spectrin membrane-skeleton via electrostatic interactions that can be disrupted by the simultaneous increase in pH and ionic strength of the solubilization medium.
机译:在细胞膜中,脂质和蛋白质的侧向分布中的局部不均匀性被认为以脂质“筏”,富含胆固醇和鞘脂的微区以及特定类型的蛋白质的形式在体内存在,它们在体内起着特殊的作用。信号转导,细胞间识别,寄生虫或病毒感染以及水泡运输。这些结构在操作上被定义为在4℃时对非离子型去污剂具有增溶作用的膜(耐洗涤剂膜,DRM)。该定义似乎是必要和充分的,尽管可能需要进行其他操作(但不一定总是进行足够详细的描述)以确保DRM的分离(如机械均质化)以及增溶介质的pH和/或离子强度的变化。我们在这里为人类红细胞表明,采用的不同条件可能导致定性和定量上不同的DRM组分的分离,从而导致脂质筏概念本身的复杂性。富含报告的脂质筏标记物(例如弗洛林1,弗洛林2和GM_1)的大部分红血球DRM通过静电相互作用锚固在血影蛋白膜骨架上,而pH值和离子强度的同时增加会破坏该相互作用。溶解介质。

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