首页> 外文期刊>The Journal of biological chemistry >Src Kinase Determines the Dynamic Exchange of the Docking Protein NEDD9 (Neural Precursor Cell Expressed Developmentally Down-regulated Gene 9) at Focal Adhesions
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Src Kinase Determines the Dynamic Exchange of the Docking Protein NEDD9 (Neural Precursor Cell Expressed Developmentally Down-regulated Gene 9) at Focal Adhesions

机译:SRC激酶在局部粘连下确定对接蛋白NEDD9(神经前体细胞表达发育下调基因9)的动态交换

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Dynamic exchange of molecules between the cytoplasm and integrin-based focal adhesions provides a rapid response system for modulating cell adhesion. Increased residency time of molecules that regulate adhesion turnover contributes to adhesion stability, ultimately determining migration speed across two-dimensional surfaces. In the present study we test the role of Src kinase in regulating dynamic exchange of the focal adhesion protein NEDD9/HEF1/Cas-L. Using either chemical inhibition or fibroblasts genetically null for Src together with fluorescence recovery after photobleaching (FRAP), we find that Src significantly reduces NEDD9 exchange at focal adhesions. Analysis of NEDD9 mutant constructs with the two major Src-interacting domains disabled revealed the greatest effects were due to the NEDD9 SH2 binding domain. This correlated with a significant change in two-dimensional migratory speed. Given the emerging role of NEDD9 as a regulator of focal adhesion stability, the time of NEDD9 association at the focal adhesions is key in modulating rates of migration and invasion. Our study suggests that Src kinase activity determines NEDD9 exchange at focal adhesions and may similarly modulate other focal adhesion-targeted Src substrates to regulate cell migration.
机译:细胞质与整合素的焦粘之间的分子的动态交换提供了一种用于调节细胞粘附的快速响应系统。调节粘合周转的分子的居住时间增加有助于粘附稳定性,最终确定跨二维表面的迁移速度。在本研究中,我们测试SRC激酶在调节局灶性粘附蛋白NEDD9 / HEF1 / CAS-1的动态交换中的作用。使用化学抑制或成纤维细胞与光苄乳酸(FRAP)之后的荧光恢复一起循环缩合SRC,发现SRC显着降低了局部粘连下的NEDD9交换。 NEDD9突变构建体与禁用两个主要的SRC相互作用结构域的分析显示出最大的效果是由于NEDD9 SH2结合结构域。这与二维迁移速度的显着变化相关。鉴于NEDD9作为局灶性粘附稳定性的调节剂的新兴作用,NEDD9在局灶性粘连中的时间是调节迁移和侵袭率的关键。我们的研究表明,SRC激酶活性在局灶性粘连中确定NEDD9交换,并且可以类似地调节其他局部粘附靶向SRC基材以调节细胞迁移。

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