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骨桥蛋白的黏附及迁移作用是通过不同的细胞表面整合素介导的。αvβ3在体外平滑肌细胞向骨桥蛋白迁移中的作用。

The adhesive and migratory effects of osteopontin are mediated via distinct cell surface integrins. Role of alpha v beta 3 in smooth muscle cell migration to osteopontin in vitro.

作者信息

Liaw L, Skinner M P, Raines E W, Ross R, Cheresh D A, Schwartz S M, Giachelli C M

机构信息

Department of Pathology, University of Washington, Seattle 98195.

出版信息

J Clin Invest. 1995 Feb;95(2):713-24. doi: 10.1172/JCI117718.

Abstract

Osteopontin is an arginine-glycine-aspartate containing acidic glycoprotein postulated to mediate adhesion, migration, and biomineralization in diverse tissues. The mechanisms explaining this multifunctionality are not well understood, although it is known that one osteopontin receptor is the alpha v beta 3 integrin. In this work, we studied human smooth muscle cells varying in alpha v beta 3 levels to identify additional osteopontin receptors. We report that, in addition to alpha v beta 3, both alpha v beta 5 and alpha v beta 1 are osteopontin receptors. Moreover, the presence or absence of alpha v beta 3 on the cell surface altered the adhesive and migratory responses of smooth muscle cells to osteopontin. Adhesion of alpha v beta 3-deficient cell populations to osteopontin was only half that of cells containing alpha v beta 3, and migration toward an osteopontin gradient in the Boyden chamber was dependent on cell surface alpha v beta 3. Although alpha v beta 3-deficient smooth muscle cells were unable to migrate to osteopontin, they did migrate significantly in response to vitronectin and fibronectin. These findings represent the first description of alpha v beta 5 and alpha v beta 1 as osteopontin receptors and suggest that, while adhesion to osteopontin is supported by integrins containing beta 1, beta 3, and beta 5, migration in response to osteopontin appears to depend on alpha v beta 3. Thus, interaction with distinct receptors is one mechanism by which osteopontin may initiate multiple functions.

摘要

骨桥蛋白是一种含精氨酸 - 甘氨酸 - 天冬氨酸的酸性糖蛋白,据推测它在多种组织中介导黏附、迁移和生物矿化作用。尽管已知一种骨桥蛋白受体是αvβ3整合素,但解释这种多功能性的机制尚未完全明确。在这项研究中,我们研究了αvβ3水平不同的人平滑肌细胞,以确定其他骨桥蛋白受体。我们报告称,除αvβ3外,αvβ5和αvβ1都是骨桥蛋白受体。此外,细胞表面αvβ3的存在与否改变了平滑肌细胞对骨桥蛋白的黏附及迁移反应。缺乏αvβ3的细胞群体对骨桥蛋白的黏附仅为含有αvβ3细胞的一半,并且在Boyden小室中向骨桥蛋白梯度的迁移依赖于细胞表面的αvβ3。尽管缺乏αvβ3的平滑肌细胞无法迁移至骨桥蛋白,但它们对玻连蛋白和纤连蛋白有明显的迁移反应。这些发现首次描述了αvβ5和αvβ1作为骨桥蛋白受体,并表明,虽然对骨桥蛋白的黏附由含有β1、β3和β5的整合素支持,但对骨桥蛋白的迁移似乎依赖于αvβ3。因此,与不同受体的相互作用是骨桥蛋白可能启动多种功能的一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/697a/295539/5b9f4b406c61/jcinvest00024-0288-a.jpg

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