Nammalwar Rathangadhara Chakrapani, Heil Annika, Gerke Volker
Institute of Medical Biochemistry, Centre for Molecular Biology of Inflammation (ZMBE), Cells-in-Motion Cluster of Excellence (EXC 1003 - CiM), University of Münster, Von-Esmarch-Str. 56, 48149 Münster, Germany.
Institute of Medical Biochemistry, Centre for Molecular Biology of Inflammation (ZMBE), Cells-in-Motion Cluster of Excellence (EXC 1003 - CiM), University of Münster, Von-Esmarch-Str. 56, 48149 Münster, Germany.
Biochim Biophys Acta. 2015 Sep;1853(9):2086-94. doi: 10.1016/j.bbamcr.2014.12.026. Epub 2014 Dec 30.
The cortical cytoskeleton constitutes an important subcellular structure that determines cell shape and regulates cell migration as well as membrane traffic to and from the plasma membrane. Many components of the cortical cytoskeleton have been identified including structural and scaffolding proteins, membrane-cytoskeleton linker proteins and signaling intermediates. We describe here an association of the membrane-F-actin linker protein ezrin with the scaffolding protein IQGAP1 that serves as a hub for concentrating different signaling complexes. Both, ezrin and IQGAP1 bind in a Ca²⁺-dependent manner to the EF hand protein S100P and complexes consisting of Ca²⁺-bound S100P, IQGAP1 and ezrin can be isolated by immunoprecipitation. Ezrin and IQGAP1 also interact in the absence of Ca²⁺, thus independent of S100P. Direct ezrin-IQGAP1 interaction can be shown with the purified proteins. It is mediated via the N-terminal FERM domain of ezrin and the IQ domain of IQGAP1, respectively. Ezrin and IQGAP1 colocalize in the submembraneous cytoskeleton and in cellular protrusions of human epithelial cells and knockdown of ezrin reduces the cortical localization of IQGAP1. Thus, ezrin appears to participate in recruiting IQGAP1 to the cell cortex thereby establishing a close connection between membrane-F-actin contacts and actin regulators that can be assembled by IQGAP1. This article is part of a Special Issue entitled: 13th European Symposium on Calcium.
皮质细胞骨架构成一种重要的亚细胞结构,它决定细胞形状,调节细胞迁移以及进出质膜的膜运输。皮质细胞骨架的许多成分已被鉴定出来,包括结构蛋白和支架蛋白、膜 - 细胞骨架连接蛋白以及信号中间体。我们在此描述膜 - F - 肌动蛋白连接蛋白埃兹蛋白(ezrin)与支架蛋白IQGAP1的关联,IQGAP1作为一个集中不同信号复合物的枢纽。埃兹蛋白和IQGAP1都以Ca²⁺依赖的方式与EF手型蛋白S100P结合,并且由Ca²⁺结合的S100P、IQGAP1和埃兹蛋白组成的复合物可以通过免疫沉淀分离出来。埃兹蛋白和IQGAP1在没有Ca²⁺的情况下也相互作用,因此独立于S100P。纯化的蛋白质可显示埃兹蛋白与IQGAP1的直接相互作用。它分别通过埃兹蛋白的N端FERM结构域和IQGAP1的IQ结构域介导。埃兹蛋白和IQGAP1在人上皮细胞的膜下细胞骨架和细胞突起中共定位,敲低埃兹蛋白会降低IQGAP1的皮质定位。因此,埃兹蛋白似乎参与将IQGAP1招募到细胞皮质,从而在膜 - F - 肌动蛋白接触与可由IQGAP1组装的肌动蛋白调节剂之间建立紧密联系。本文是名为:第13届欧洲钙研讨会的特刊的一部分。