Green J Angelo, Berrier Allison L, Pankov Roumen, Yamada Kenneth M
Laboratory of Cell and Developmental Biology, NIDCR, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 2009 Mar 20;284(12):8148-59. doi: 10.1074/jbc.M805934200. Epub 2009 Jan 14.
The integrin beta(1) cytoplasmic domain (tail) serves as a scaffold for numerous intracellular proteins. The mechanisms by which the tail coordinates these proteins to facilitate extracellular matrix assembly and cell spreading are not clear. This study demonstrates that the beta(1) cytoplasmic domain can regulate cell spreading on fibronectin and fibronectin matrix assembly through Akt- and talin-dependent mechanisms, respectively. To identify these mechanisms, we characterized GD25 cells expressing the beta(1) integrin cytoplasmic domain mutants W775A and R760A. Although cell spreading appears normal in R760A mutant-integrin cells compared with wild type, it is inhibited in W775A mutant cells. In contrast, both mutant cell lines show defective fibronectin matrix assembly. Inhibition of cell spreading, but not matrix assembly, in the W775A mutant cells is due to a specific defect in Akt-1 activation. In addition, we find that both W775A and R760A mutant integrins have reduced surface expression of the 9EG7 epitope that correlates with reduced recruitment of talin to beta(1) integrin cytoplasmic complexes. Down-regulation of talin with small interfering RNA or expression of green fluorescent protein-talin head domain inhibits matrix assembly in beta(1) wild-type cells, mimicking the defect seen with the W775A and R760A mutant cells. These results demonstrate distinct mechanisms by which integrins regulate cell spreading and matrix assembly through the beta(1) integrin cytoplasmic tail.
整合素β1胞质结构域(尾部)作为多种细胞内蛋白的支架。该尾部协调这些蛋白以促进细胞外基质组装和细胞铺展的机制尚不清楚。本研究表明,β1胞质结构域可分别通过Akt和踝蛋白依赖性机制调节细胞在纤连蛋白上的铺展以及纤连蛋白基质的组装。为了确定这些机制,我们对表达β1整合素胞质结构域突变体W775A和R760A的GD25细胞进行了表征。与野生型相比,尽管R760A突变体整合素细胞中的细胞铺展看起来正常,但在W775A突变体细胞中受到抑制。相反,两种突变细胞系均显示纤连蛋白基质组装存在缺陷。W775A突变体细胞中细胞铺展的抑制而非基质组装的抑制是由于Akt-1激活的特定缺陷。此外,我们发现W775A和R760A突变体整合素均降低了9EG7表位的表面表达,这与踝蛋白向β1整合素胞质复合物的募集减少相关。用小干扰RNA下调踝蛋白或绿色荧光蛋白-踝蛋白头部结构域的表达可抑制β1野生型细胞中的基质组装,模拟W775A和R760A突变体细胞中所见的缺陷。这些结果表明整合素通过β1整合素胞质尾部调节细胞铺展和基质组装的不同机制。