Hansen Marc D H, Beckerle Mary C
Huntsman Cancer Institute, University of Utah, Salt Lake City, Utah 84102, USA.
J Biol Chem. 2006 Jun 9;281(23):16178-88. doi: 10.1074/jbc.M512771200. Epub 2006 Apr 13.
Cadherins mediate cell-cell adhesion by linking cell junctions to actin networks. Although several actin regulatory systems have been implicated in cell-cell adhesion, it remains unclear how such systems drive cadherin-actin network formation and how they are regulated to coincide with initiation of adhesion. Previous work implicated VASP in assembly of cell-cell junctions in keratinocytes and the VASP-binding protein zyxin colocalizes with VASP at cell-cell junctions. Here we examine how domains in zyxin and its relative LPP contribute to cell-cell junction assembly. Using a quantitative assay for cell-cell adhesion, we demonstrate that zyxin and LPP function to increase the rate of early cell-cell junction assembly through the VASP-binding ActA repeat region. We also identify the LIM region of zyxin and LPP to be a regulatory domain that blocks function of these proteins. Deletion of the LIM domains drives adhesion and increases VASP level in detergent insoluble cadherin-actin. Dominant-negative zyxin/LPP mutants reduce the rate of adhesion, lower VASP levels in detergent-insoluble cadherin-actin networks, and allow for the accumulation of capping protein at cell-cell contacts. These data implicate the LIM domains of zyxin and LPP in regulating cell-cell junction assembly through VASP.
钙黏蛋白通过将细胞连接与肌动蛋白网络相连来介导细胞间黏附。尽管几种肌动蛋白调节系统与细胞间黏附有关,但目前尚不清楚这些系统如何驱动钙黏蛋白 - 肌动蛋白网络的形成,以及它们如何被调节以与黏附的起始相契合。先前的研究表明VASP参与角质形成细胞中细胞间连接的组装,并且VASP结合蛋白桩蛋白在细胞间连接处与VASP共定位。在这里,我们研究桩蛋白及其相关蛋白LPP中的结构域如何促进细胞间连接的组装。使用细胞间黏附的定量测定方法,我们证明桩蛋白和LPP通过VASP结合的ActA重复区域发挥作用,以提高早期细胞间连接组装的速率。我们还确定桩蛋白和LPP的LIM区域是一个调节结构域,可阻断这些蛋白质的功能。删除LIM结构域会促进黏附,并增加去污剂不溶性钙黏蛋白 - 肌动蛋白中的VASP水平。显性负性桩蛋白/LPP突变体降低黏附速率,降低去污剂不溶性钙黏蛋白 - 肌动蛋白网络中的VASP水平,并使帽蛋白在细胞间接触处积累。这些数据表明桩蛋白和LPP的LIM结构域通过VASP调节细胞间连接的组装。