首页> 美国卫生研究院文献>Cell Regulation >Ezrin self-association involves binding of an N-terminal domain to a normally masked C-terminal domain that includes the F-actin binding site.
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Ezrin self-association involves binding of an N-terminal domain to a normally masked C-terminal domain that includes the F-actin binding site.

机译:Ezrin自缔合涉及N末端域与包含F-肌动蛋白结合位点的通常被掩盖的C末端域的结合。

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摘要

Ezrin is a membrane-cytoskeletal linking protein that is concentrated in actin-rich surface structures. It is closely related to the microvillar proteins radixin and moesin and to the tumor suppressor merlin/schwannomin. Cell extracts contain ezrin dimers and ezrin-moesin heterodimers in addition to monomers. Truncated ezrin fusion proteins were assayed by blot overlay to determine which regions mediate self-association. Here we report that ezrin self-association occurs by head-to-tail joining of distinct N-terminal and C-terminal domains. It is likely that these domains, termed N- and C-ERMADs (ezrin-radixin-moesin association domain), are responsible for homotypic and heterotypic associations among ERM family members. The N-ERMAD of ezrin resided within amino acids 1-296; deletion of 10 additional residues resulted in loss of activity. The C-ERMAD was mapped to the last 107 amino acids of ezrin, residues 479-585. The two residues at the C-terminus were required for activity, and the region from 530-585 was insufficient. The C-ERMAD was masked in the native monomer. Exposure of this domain required unfolding ezrin with sodium dodecyl sulfate or expressing the domain as part of a truncated protein. Intermolecular association could not occur unless the C-ERMAD had been made accessible to its N-terminal partner. It can be inferred that dimerization in vivo requires an activation step that exposes this masked domain. The conformationally inaccessible C-terminal region included the F-actin binding site, suggesting that this activity is likewise regulated by masking.
机译:Ezrin是一种膜细胞骨架连接蛋白,集中在富含肌动蛋白的表面结构中。它与微绒毛蛋白radixin和moesin以及肿瘤抑制因子merlin / schwannomin密切相关。细胞提取物除单体外还包含ezrin二聚体和ezrin-moesin异二聚体。通过印迹覆盖法测定截短的ezrin融合蛋白,以确定哪些区域介导自缔合。在这里我们报告ezrin自缔合通过不同的N末端和C末端域的头尾连接而发生。这些域可能被称为N-和C-ERMAD(ezrin-radixin-moesin关联域),负责ERM家族成员之间的同型和异型关联。 ezrin的N-ERMAD位于1-296位氨基酸内;缺失10个额外的残基导致活性丧失。 C-ERMAD被定位到ezrin的最后107个氨基酸,残基479-585。 C末端的两个残基是活性所必需的,而530-585之间的区域不足。 C-ERMAD被天然单体掩蔽。暴露此结构域需要用十二烷基硫酸钠解折叠ezrin或将该结构域表达为截短蛋白的一部分。除非使C-ERMAD的N端伙伴可以访问,否则无法发生分子间关联。可以推断,体内二聚化需要暴露该被掩盖结构域的活化步骤。构象上难以接近的C末端区域包括F-肌动蛋白结合位点,表明该活性同样被掩蔽调节。

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