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α3β1整合素在细胞外基质组装中的新作用。

A novel role for alpha 3 beta 1 integrins in extracellular matrix assembly.

作者信息

Wu C, Chung A E, McDonald J A

机构信息

Samuel C. Johnson Medical Research Center, Mayo Clinic Scottsdale, AZ 85259, USA.

出版信息

J Cell Sci. 1995 Jun;108 ( Pt 6):2511-23. doi: 10.1242/jcs.108.6.2511.

Abstract

To study the biological role of alpha 3 beta 1 integrins in cell adhesion, migration, and in the deposition of extracellular matrix, we stably expressed the human alpha 3 integrin subunit in the alpha 4, alpha 5 integrin deficient CHO cell line B2. The expression of alpha 3 beta 1 integrins enhanced cell adhesion on entactin (also known as nidogen), but not on fibronectin. Using recombinant GST-fusion proteins that span the entire length of the entactin molecule, we located cell adhesive activity to the G2 domain of entactin. These results suggest that the alpha 3 beta 1 integrin functions as an adhesion receptor interacting with the G2 domain of entactin. On the other hand, the expression of alpha 3 beta 1 integrins did not confer the ability to migrate on entactin. Strikingly, the expression of alpha 3 beta 1 dramatically increased the deposition of entactin and fibronectin into the pericellular matrix. This was accompanied by increased binding activity of the 29 kDa amino-terminal domain of fibronectin. Thus, similar to alpha 5 beta 1 integrins, alpha 3 beta 1 integrins can play an important role in modulating the assembly of pericellular matrices. However, unlike fibronectin deposition supported by alpha 5 beta 1, alpha 3 beta 1 supported fibronectin deposition into pericellular matrix was not inhibited by antibodies binding to the RGD containing cell adhesion domain of fibronectin, demonstrating that the two processes are mechanistically distinct. The role of alpha 3 beta 1 in pericellular matrix assembly potentially implicates this receptor in the assembly and/or recognition of entactin-containing pericellular matrices, an observation consistent with its apparent role in the renal glomerulus of the mammalian kidney.

摘要

为了研究α3β1整合素在细胞黏附、迁移以及细胞外基质沉积中的生物学作用,我们在α4、α5整合素缺陷的CHO细胞系B2中稳定表达了人α3整合素亚基。α3β1整合素的表达增强了细胞对巢蛋白(也称为巢癌蛋白)的黏附,但对纤连蛋白无增强作用。利用覆盖巢蛋白分子全长的重组GST融合蛋白,我们将细胞黏附活性定位到巢蛋白的G2结构域。这些结果表明,α3β1整合素作为一种黏附受体,与巢蛋白的G2结构域相互作用。另一方面,α3β1整合素的表达并未赋予细胞在巢蛋白上迁移的能力。引人注目的是,α3β1的表达显著增加了巢蛋白和纤连蛋白向细胞周围基质的沉积。这伴随着纤连蛋白29 kDa氨基末端结构域结合活性的增加。因此,与α5β1整合素类似,α3β1整合素在调节细胞周围基质的组装中可发挥重要作用。然而,与α5β1支持的纤连蛋白沉积不同,α3β1支持的纤连蛋白向细胞周围基质的沉积不受与纤连蛋白含RGD细胞黏附结构域结合的抗体的抑制,这表明这两个过程在机制上是不同的。α3β1在细胞周围基质组装中的作用可能使其参与含巢蛋白的细胞周围基质的组装和/或识别,这一观察结果与其在哺乳动物肾脏肾小球中的明显作用一致。

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