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Tetraspanin-enriched microdomains: a functional unit in cell plasma membranes

机译:富含四跨素的微区:细胞质膜中的功能单元

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摘要

Membrane lipids and proteins are non-randomly distributed and are unable to diffuse freely in the plane of the membrane. This is because of multiple constraints imposed both by the cortical cytoskeleton and by the preference of lipids and proteins to cluster into diverse and specialized membrane domains, including tetraspanin-enriched microdomains, glycosylphosphatidyl inositol-linked proteins nanodomains and caveolae, among others. Recent biophysical characterization of tetraspanin-enriched microdomains suggests that they might be specially suited for the regulation of avidity of adhesion receptors and the compartmentalization of enzymatic activities. Moreover, modulation by tetraspanins of the function of adhesion receptors involved in inflammation, lymphocyte activation, cancer and pathogen infection suggests potential as therapeutic targets. This review explores this emerging picture of tetraspanin microdomains and discusses the implications for cell adhesion, proteolysis and pathogenesis.
机译:膜脂质和蛋白质是非随机分布的,不能在膜平面内自由扩散。这是由于皮层细胞骨架以及脂质和蛋白质倾向于聚类成各种特殊的膜结构域(包括富含四跨素的微结构域,糖基磷脂酰肌醇连接的蛋白质纳米结构域和小窝)而施加的多重约束。富含四跨素的微结构域的最新生物物理特征表明,它们可能特别适合调节粘附受体的亲和力和酶活性的区室化。此外,四跨膜蛋白对参与炎症,淋巴细胞活化,癌症和病原体感染的粘附受体功能的调节表明潜在的治疗靶点。这篇综述探索了四跨膜蛋白微结构域的新兴图景,并讨论了对细胞粘附,蛋白水解和发病机理的影响。

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