Bretscher A, Gary R, Berryman M
Section of Biochemistry, Molecular and Cell Biology, Cornell University, Ithaca, New York 14853, USA.
Biochemistry. 1995 Dec 26;34(51):16830-7. doi: 10.1021/bi00051a034.
Previous work has indicated that ezrin, a membrane-microfilament linking protein, exists largely as a monomeric protein in solution. Here we purify from human placenta two cytosolic ezrin species that chromatography differently on gel filtration, anion, and cation exchange resins. Both species contain only the ezrin polypeptide, yet they do not readily interconvert in vitro as determined by gel filtration analysis. Determination of the physical properties of the two species indicates that one represents the conventional monomer, whereas the other represents highly asymmetric dimers. Chemical cross-linking data support this conclusion. Purified ezrin monomers normally have a masked C-terminal domain (termed a C-ERMAD) that, upon exposure, can associate with an N-terminal domain (termed N-ERMAD) of another ezrin molecule. Here we show that purified ezrin dimers also have masked C-ERMADs. On the basis of these results, we suggest a working model for the molecular organization of ezrin monomers and dimers and propose a hypothesis that explains the stable coexistence of ezrin monomers and dimers in placenta. Since radixin and moesin, the two other members of the closely related ERM protein family, both contain N- and C-ERMADs, the results we have documented and models proposed for ezrin are likely to apply to radixin and moesin as well.
先前的研究表明,埃兹蛋白是一种膜微丝连接蛋白,在溶液中主要以单体蛋白形式存在。在此,我们从人胎盘中纯化出两种胞质埃兹蛋白,它们在凝胶过滤、阴离子和阳离子交换树脂上的色谱行为不同。这两种蛋白均只含有埃兹蛋白多肽,但通过凝胶过滤分析确定,它们在体外不易相互转化。对这两种蛋白物理性质的测定表明,一种代表传统的单体,而另一种代表高度不对称的二聚体。化学交联数据支持这一结论。纯化的埃兹蛋白单体通常具有一个被掩盖的C末端结构域(称为C-ERMAD),该结构域暴露后可与另一个埃兹蛋白分子的N末端结构域(称为N-ERMAD)结合。在此我们表明,纯化的埃兹蛋白二聚体也具有被掩盖的C-ERMAD。基于这些结果,我们提出了一个埃兹蛋白单体和二聚体分子组织的工作模型,并提出了一个假说,解释了埃兹蛋白单体和二聚体在胎盘中稳定共存的现象。由于埃兹蛋白相关膜突蛋白家族的另外两个成员根蛋白和埃莫辛都含有N-ERMAD和C-ERMAD,我们记录的结果以及为埃兹蛋白提出的模型可能也适用于根蛋白和埃莫辛。