Datta A, Shi Q, Boettiger D E
Department of Microbiology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Mol Cell Biol. 2001 Nov;21(21):7295-306. doi: 10.1128/MCB.21.21.7295-7306.2001.
Adhesion of cells to extracellular matrix is mediated by integrin family receptors. The process of receptor-ligand binding is dependent on metabolic energy and is regulated by intracellular signals, termed inside-out signals. The strength of the initial alpha5beta1-mediated adhesion of v-src-transformed chicken embryo fibroblasts (v-srcCEF) was similar to that of normal CEF. A chemically cross-linked fibronectin substrate was able to restore cell spreading and the ability of v-srcCEF to assemble a fibronectin matrix. Over time, v-srcCEF showed decreased adhesion due to the reduction of alpha5beta1-fibronectin bonds consequent on the reduction of substrate-bound fibronectin due to the secretion of proteases by v-srcCEF. Excess synthesis of hyaluronic acid by v-srcCEF also reduced the alpha5beta1-fibronectin bonds and contributed to cell detachment at later times in culture. Thus, the adhesion defects were not due to a failure of alpha5beta1 function and adhesion of the v-srcCEF was alpha5beta1 dependent. Integrin-mediated adhesion also produces signals that affect cell proliferation and cell differentiation. An early consequence of these "outside-in" signals was the phosphorylation of FAK Y397 in direct proportion to the number of alpha5beta1-fibronectin bonds formed. In contrast, v-srcCEF had an increased level of phosphorylation on five different tyrosines in FAK, and none of these phosphorylation levels were sensitive to the number of alpha5beta1-fibronectin bonds. In the absence of serum, CEF proliferation was sensitive to changes in alpha5beta1-mediated adhesion levels. Transformation by v-src increased the serum-free proliferation rate and made it insensitive to alpha5beta1-mediated adhesion. Thus, the v-srcCEF were insensitive to the normal outside-in signals from alpha5beta1 integrin.
细胞与细胞外基质的黏附由整合素家族受体介导。受体 - 配体结合过程依赖于代谢能量,并受细胞内信号(称为外向信号)调节。v-src转化的鸡胚成纤维细胞(v-srcCEF)最初由α5β1介导的黏附强度与正常CEF相似。化学交联的纤连蛋白底物能够恢复细胞铺展以及v-srcCEF组装纤连蛋白基质的能力。随着时间推移,v-srcCEF的黏附力下降,这是由于v-srcCEF分泌蛋白酶导致底物结合的纤连蛋白减少,进而α5β1 - 纤连蛋白键减少所致。v-srcCEF过量合成透明质酸也减少了α5β1 - 纤连蛋白键,并在培养后期导致细胞脱离。因此,黏附缺陷并非由于α5β1功能缺失,v-srcCEF的黏附依赖于α5β1。整合素介导的黏附还会产生影响细胞增殖和分化的信号。这些“内向信号”的一个早期结果是FAK Y397的磷酸化,其与形成的α5β1 - 纤连蛋白键数量成正比。相比之下,v-srcCEF的FAK在五个不同酪氨酸位点的磷酸化水平升高,且这些磷酸化水平均对α5β1 - 纤连蛋白键的数量不敏感。在无血清条件下,CEF的增殖对α5β1介导的黏附水平变化敏感。v-src转化增加了无血清增殖速率,并使其对α5β1介导的黏附不敏感。因此,v-srcCEF对来自α5β1整合素的正常内向信号不敏感。