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整合素α6Aβ1诱导不依赖细胞外基质迁移底物的CD81依赖性细胞运动。

Integrin alpha 6A beta 1 induces CD81-dependent cell motility without engaging the extracellular matrix migration substrate.

作者信息

Domanico S Z, Pelletier A J, Havran W L, Quaranta V

机构信息

Department of Cell Biology, Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Mol Biol Cell. 1997 Nov;8(11):2253-65. doi: 10.1091/mbc.8.11.2253.

Abstract

It is well established that integrins and extracellular matrix (ECM) play key roles in cell migration, but the underlying mechanisms are poorly defined. We describe a novel mechanism whereby the integrin alpha 6 beta 1, a laminin receptor, can affect cell motility and induce migration onto ECM substrates with which it is not engaged. By using DNA-mediated gene transfer, we expressed the human integrin subunit alpha 6A in murine embryonic stem (ES) cells. ES cells expressing alpha 6A (ES6A) at the surface dimerized with endogenous beta 1, extended numerous filopodia and lamellipodia, and were intensely migratory in haptotactic assays on laminin (LN)-1. Transfected alpha 6A was responsible for these effects, because cells transfected with control vector or alpha 6B, a cytoplasmic domain alpha 6 isoform, displayed compact morphology and no migration, like wild-type ES cells. The ES6A migratory phenotype persisted on fibronectin (Fn) and Ln-5. Adhesion inhibition assays indicated that alpha 6 beta 1 did not contribute detectably to adhesion to these substrates in ES cells. However, anti-alpha 6 antibodies completely blocked migration of ES6A cells on Fn or Ln-5. Control experiments with monensin and anti-ECM antibodies indicated that this inhibition could not be explained by deposition of an alpha 6 beta 1 ligand (e.g., Ln-1) by ES cells. Cross-linking with secondary antibody overcame the inhibitory effect of anti-alpha 6 antibodies, restoring migration or filopodia extension on Fn and Ln-5. Thus, to induce migration in ES cells, alpha 6A beta 1 did not have to engage with an ECM ligand but likely participated in molecular interactions sensitive to anti-alpha 6 beta 1 antibody and mimicked by cross-linking. Antibodies to the tetraspanin CD81 inhibited alpha 6A beta 1-induced migration but had no effect on ES cell adhesion. It is known that CD81 is physically associated with alpha 6 beta 1, therefore our results suggest a mechanism by which interactions between alpha 6A beta 1 and CD81 may up-regulate cell motility, affecting migration mediated by other integrins.

摘要

整合素和细胞外基质(ECM)在细胞迁移中起关键作用,这一点已得到充分证实,但其潜在机制仍不清楚。我们描述了一种新机制,即层粘连蛋白受体整合素α6β1可影响细胞运动性,并诱导细胞迁移到未与之结合的ECM底物上。通过DNA介导的基因转移,我们在小鼠胚胎干细胞(ES)中表达了人类整合素亚基α6A。表面表达α6A的ES细胞(ES6A)与内源性β1二聚化,伸出大量丝状伪足和片状伪足,并且在层粘连蛋白(LN)-1的趋触性分析中具有强烈的迁移能力。转染的α6A导致了这些效应,因为用对照载体或α6B(一种胞质结构域α6同工型)转染的细胞表现出紧密的形态且无迁移能力,与野生型ES细胞一样。ES6A的迁移表型在纤连蛋白(Fn)和Ln-5上持续存在。黏附抑制试验表明,α6β1对ES细胞黏附这些底物的作用不明显。然而,抗α6抗体完全阻断了ES6A细胞在Fn或Ln-5上的迁移。用莫能菌素和抗ECM抗体进行的对照实验表明,这种抑制作用不能用ES细胞沉积α6β1配体(如Ln-1)来解释。用二抗交联克服了抗α6抗体的抑制作用,恢复了在Fn和Ln-5上的迁移或丝状伪足延伸。因此,为了在ES细胞中诱导迁移,α6Aβ1不必与ECM配体结合,但可能参与了对抗α6β1抗体敏感且可通过交联模拟的分子相互作用。四跨膜蛋白CD81的抗体抑制α6Aβ1诱导的迁移,但对ES细胞黏附没有影响。已知CD81与α6β1存在物理关联,因此我们的结果提示了一种机制,即α6Aβ1与CD81之间的相互作用可能上调细胞运动性,影响由其他整合素介导的迁移。

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