Craig David H, Gayer Christopher P, Schaubert Keri L, Wei Yanzhang, Li Jinhua, Laouar Yasmina, Basson Marc D
Department of Surgery, John D. Dingell VA Medical Center, 4646 John R. Street, Detroit, MI 48201-1932, USA.
Am J Physiol Cell Physiol. 2009 Jan;296(1):C193-204. doi: 10.1152/ajpcell.00355.2008. Epub 2008 Nov 12.
Increased extracellular pressure stimulates beta1-integrin-dependent cancer cell adhesion. We asked whether pressure-induced adhesion is mediated by changes in beta1-integrin binding affinity or avidity and whether these changes are phosphorylation dependent. We evaluated integrin affinity and clustering in human SW620 colon cancer cells by measuring differences in binding between soluble Arg-Gly-Asp (RGD)-Fc ligands and RGD-Fc-F(ab')2 multimeric complexes under ambient and 15-mmHg increased pressures. Phosphorylation of beta1-integrin S785 and T788/9 residues in SW620 and primary malignant colonocytes was assessed in parallel. We further used GD25-beta1-integrin-null murine fibroblasts stably transfected with either wild-type beta1A-integrin, S785A, TT788/9AA, or T788D mutants to investigate the role of beta1-integrin site-specific phosphorylation. SW620 binding of RGD-Fc-F(ab')2 multimeric complexes, but not soluble RGD-Fc ligands, was sensitive to integrin clustering. RGD-Fc ligand binding was significantly increased under elevated pressure, suggesting that pressure modulates beta1-integrin affinity. Pressure stimulated both beta1-integrin S785 and T788/9 phosphorylation. GD25-beta1A-integrin wild-type and S785A cells displayed an increase in adhesion to fibronectin under elevated pressure, an effect absent in beta1-integrin-null and TT788/9AA cells. T788D substitution significantly elevated basal cell adhesion but displayed no further increase under pressure. These results suggest pressure-induced cell adhesion is mediated by beta1-integrin T788/9 phosphorylation-dependent changes in integrin binding affinity.
细胞外压力升高会刺激β1整合素依赖性癌细胞黏附。我们研究了压力诱导的黏附是否由β1整合素结合亲和力或亲合力的变化介导,以及这些变化是否依赖于磷酸化。我们通过测量在环境压力和15 mmHg升高压力下可溶性精氨酸-甘氨酸-天冬氨酸(RGD)-Fc配体与RGD-Fc-F(ab')2多聚体复合物之间结合的差异,评估了人SW620结肠癌细胞中整合素的亲和力和聚集情况。同时评估了SW620和原发性恶性结肠细胞中β1整合素S785和T788/9残基的磷酸化情况。我们进一步使用稳定转染野生型β1A整合素、S785A、TT788/9AA或T788D突变体的GD25-β1整合素缺陷型小鼠成纤维细胞,来研究β1整合素位点特异性磷酸化的作用。RGD-Fc-F(ab')2多聚体复合物而非可溶性RGD-Fc配体的SW620结合对整合素聚集敏感。在压力升高时,RGD-Fc配体结合显著增加,表明压力调节β1整合素亲和力。压力刺激β1整合素S785和T788/9磷酸化。GD25-β1A整合素野生型和S785A细胞在压力升高时对纤连蛋白的黏附增加,而β1整合素缺陷型和TT788/9AA细胞中则没有这种效应。T788D替代显著提高了基础细胞黏附,但在压力下没有进一步增加。这些结果表明,压力诱导的细胞黏附是由β1整合素T788/9磷酸化依赖性的整合素结合亲和力变化介导的。