Davis G E
Department of Pathology, Texas A&M University College of Medicine, College Station 77843-1114.
Biochem Biophys Res Commun. 1992 Feb 14;182(3):1025-31. doi: 10.1016/0006-291x(92)91834-d.
Cellular adhesion receptors termed integrins play an important role in the interaction of cells with extracellular matrix (ECM) during wound healing, development and tumorigenesis. During such events, ECM may become modified or damaged which could alter the types of adhesive signals presented to cells. In this study, cell adhesion and affinity chromatography experiments were performed to determine whether different integrins interact with denatured versus native ECM molecules. Human melanoma cells were found to adhere to denatured versus native type I collagen through different integrins. The cells adhere to denatured collagen through the alpha v beta 3 integrin and this interaction is inhibited by an RGD containing peptide but not by a control peptide. In contrast, adhesion to native type I collagen appears to be mediated by several beta 1 integrins and thus, is not inhibited by either alpha v beta 3 antibodies or the RGD peptide. Affinity chromatography reveals a marked increase in the quantity of alpha v beta 3 isolated on denatured collagen versus native collagen-sepharose. These results suggest that RGD sites in type I collagen may be masked and that they become exposed upon denaturation of the molecule. Wounding of extracellular matrix may, thus, expose RGD sites in collagens that facilitate the interaction of cells with damaged extracellular matrix through RGD binding integrins.
被称为整合素的细胞黏附受体在伤口愈合、发育和肿瘤发生过程中细胞与细胞外基质(ECM)的相互作用中发挥着重要作用。在这些过程中,ECM可能会发生修饰或损伤,这可能会改变呈现给细胞的黏附信号类型。在本研究中,进行了细胞黏附及亲和层析实验,以确定不同的整合素是否与变性的和天然的ECM分子相互作用。研究发现,人黑色素瘤细胞通过不同的整合素与变性的和天然的I型胶原结合。细胞通过αvβ3整合素与变性胶原结合,这种相互作用可被含RGD的肽抑制,但不能被对照肽抑制。相反,细胞与天然I型胶原的黏附似乎是由几种β1整合素介导的,因此,既不受αvβ3抗体也不受RGD肽的抑制。亲和层析显示,与天然胶原琼脂糖相比,变性胶原上分离出的αvβ3数量显著增加。这些结果表明,I型胶原中的RGD位点可能被掩盖,并且在分子变性后会暴露出来。因此,细胞外基质的损伤可能会暴露胶原中的RGD位点,从而通过RGD结合整合素促进细胞与受损细胞外基质的相互作用。