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六臂体(腱生蛋白)与细胞外基质及基底的结合及其对细胞黏附的影响。

Binding of hexabrachion (tenascin) to the extracellular matrix and substratum and its effect on cell adhesion.

作者信息

Lightner V A, Erickson H P

机构信息

Department of Cell Biology, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

J Cell Sci. 1990 Feb;95 ( Pt 2):263-77. doi: 10.1242/jcs.95.2.263.

Abstract

Hexabrachion is a large glycoprotein of the extracellular matrix (ECM) that is prominent in embryogenesis, wound healing and tumorigenesis. Because of the role of extracellular matrix proteins in the regulation of cell differentiation and migration, the interaction of hexabrachion with cells as well as with other components of the ECM is of great interest. Early reports suggested that hexabrachion does not bind to fibronectin or gelatin but does bind to chondroitin sulfate proteoglycans. However, more recent reports have suggested that hexabrachion binds to fibronectin and inhibits cell adhesion as well as cell migration on fibronectin. We have found no evidence of strong hexabrachion-fibronectin binding on either a solid-phase ELISA assay or in a fluid-phase sedimentation assay in which the reactants were allowed to dissociate. However, hexabrachion sedimentation was accelerated in a gradient containing fibronectin throughout. This demonstrates an association between hexabrachions and fibronectin, but the complex is apparently weak and readily reversible. The solid-phase ELISA also shows no evidence of hexabrachion binding to gelatin, laminin or types I, III, IV or V collagen. Hexabrachion does not support strong cell attachment of the cell lines tested. Moreover, hexabrachion can inhibit cell attachment to fibronectin. We demonstrate here that this inhibition requires the hexabrachion to be able to bind to the plastic substratum. The results suggest that hexabrachion inhibition is via a steric inhibition. When the hexabrachion molecules bind to the plastic, they cover up a significant fraction of the underlying fibronectin molecules. Antibody studies are presented that show that hexabrachion can nonspecifically block access of immunoglobulin G molecules to the underlying matrix. This steric blocking is not unique to hexabrachion.

摘要

六臂蛋白是细胞外基质(ECM)中的一种大型糖蛋白,在胚胎发生、伤口愈合和肿瘤发生过程中十分突出。由于细胞外基质蛋白在细胞分化和迁移调节中发挥作用,六臂蛋白与细胞以及细胞外基质其他成分之间的相互作用备受关注。早期报告表明,六臂蛋白不与纤连蛋白或明胶结合,但能与硫酸软骨素蛋白聚糖结合。然而,最近的报告显示六臂蛋白与纤连蛋白结合,并抑制细胞在纤连蛋白上的黏附及迁移。我们在固相ELISA测定或液相沉降测定中均未发现六臂蛋白与纤连蛋白有强结合的证据,在这些测定中反应物可解离。然而,在整个含有纤连蛋白的梯度中,六臂蛋白的沉降加速。这表明六臂蛋白与纤连蛋白之间存在关联,但该复合物显然较弱且易于逆转。固相ELISA也未显示六臂蛋白与明胶、层粘连蛋白或I、III、IV或V型胶原结合的证据。六臂蛋白不支持所测试细胞系的强细胞黏附。此外,六臂蛋白可抑制细胞与纤连蛋白的黏附。我们在此证明,这种抑制作用要求六臂蛋白能够与塑料基质结合。结果表明,六臂蛋白的抑制作用是通过空间位阻实现的。当六臂蛋白分子与塑料结合时,它们会覆盖相当一部分底层的纤连蛋白分子。抗体研究表明,六臂蛋白可非特异性地阻断免疫球蛋白G分子与底层基质的接触。这种空间位阻并非六臂蛋白所特有。

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