Bretscher A, Reczek D, Berryman M
Section of Biochemistry, Molecular and Cell Biology, Cornell University, Ithaca, NY 14853, USA.
J Cell Sci. 1997 Dec;110 ( Pt 24):3011-8. doi: 10.1242/jcs.110.24.3011.
The cortical cytoskeleton of eucaryotic cells provides structural support to the plasma membrane and also contributes to dynamic processes such as endocytosis, exocytosis, and transmembrane signaling pathways. The ERM (ezrin-radixin-moesin) family of proteins, of which ezrin is the best studied member, play structural and regulatory roles in the assembly and stabilization of specialized plasma membrane domains. Ezrin and related molecules are concentrated in surface projections such as microvilli and membrane ruffles where they link the microfilaments to the membrane. The present knowledge about ezrin is discussed from an historical perspective. Both biochemical and cell biological studies have revealed that ezrin can exist in a dormant conformation that requires activation to expose otherwise masked association sites. Current results indicate that activated ezrin monomers or head-to-tail oligomers associate directly with F-actin through a domain in its C terminus, and with the membrane through its N-terminal domain. The association of ezrin with transmembrane proteins can be direct, as in the case of CD44, or indirect through EBP50. Other binding partners, including the regulatory subunit of protein kinase A and rho-GDI, suggest that ezrin is an integral component of these signaling pathways. Although the membrane-cytoskeletal linking function is clear, further studies are necessary to reveal how the activation of ezrin and its association with different binding partners is regulated.
真核细胞的皮质细胞骨架为质膜提供结构支持,也有助于内吞作用、外排作用和跨膜信号通路等动态过程。ERM(埃兹蛋白-根蛋白-膜突蛋白)家族蛋白中,埃兹蛋白是研究得最透彻的成员,它在特殊质膜结构域的组装和稳定中发挥结构和调节作用。埃兹蛋白及相关分子集中在微绒毛和膜皱褶等表面突起中,在那里它们将微丝与膜连接起来。本文从历史角度讨论了关于埃兹蛋白的现有知识。生化和细胞生物学研究均表明,埃兹蛋白可以以一种休眠构象存在,这种构象需要激活才能暴露原本被掩盖的结合位点。目前的研究结果表明,激活的埃兹蛋白单体或头对头寡聚体通过其C端的一个结构域直接与F-肌动蛋白结合,并通过其N端结构域与膜结合。埃兹蛋白与跨膜蛋白的结合可以是直接的,如CD44的情况,也可以通过EBP50间接结合。其他结合伴侣,包括蛋白激酶A的调节亚基和rho-GDI,表明埃兹蛋白是这些信号通路的一个组成部分。虽然膜-细胞骨架连接功能是明确的,但仍需要进一步研究来揭示埃兹蛋白的激活及其与不同结合伴侣的结合是如何被调节的。