Different integrins mediate cell spreading, haptotaxis and lateral migration of HaCaT keratinocytes on fibronectin.

L Koivisto, K Larjava, L Häkkinen, V J Uitto, J Heino, H Larjava
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引用次数: 77

Abstract

Collaborative role of various fibronectin-binding integrins (alpha5beta1, alphavbeta1 and alphavbeta6) as mediators of cell adhesion and migration on fibronectin was studied using cultured HaCaT keratinocytes. This cell line spontaneously expressed all three fibronectin-binding integrins. In addition, the expression of alphavbeta6 integrin was strongly and specifically upregulated by transforming growth factor-beta1 (TGFbeta1) whereas the amount of other integrins remained practically unchanged on the cell surface. Adhesion, spreading and motility of HaCaT keratinocytes on fibronectin were promoted by TGFbeta1. Based on antibody blocking experiments, both untreated and TGFbeta1-treated HaCaT cells used alphavbeta6 integrin as their main fibronectin receptor for cell spreading. In contrast to TGFbeta1-treated cells, the untreated cells also needed alpha5beta1 integrin for maximal cell spreading on fibronectin. Combinations of antibodies blocking both of these receptors totally prevented spreading of both untreated and TGFbeta1-treated cells. Haptotactic motility of individual HaCaT cells through fibronectin-coated membranes was again mainly dependent on alphavbeta6 integrin, while alphavbeta1 and alpha5beta1 integrins played a lesser role both in untreated and TGFbeta1-treated HaCaT cells. However, unlike haptotaxis, lateral migration of HaCaT cell sheet was mainly mediated by beta1 integrins, and alphavbeta6 integrin showed a minor role. The migration process appeared to involve a number of beta1 integrins that could adaptively replace each other when blocking antibodies were present. Thus, keratinocytes appear to use different fibronectin receptors for different functions, such as cell spreading, haptotaxis and lateral migration. The cells can also adapt to a situation where one receptor is unfunctional by switching to another receptor of the same ligand.

不同的整合素介导HaCaT角化细胞在纤维连接蛋白上的细胞扩散、趋向性和横向迁移。
利用培养的HaCaT角质形成细胞,研究了多种纤维连接蛋白结合整合素(alpha5beta1、alphavbeta1和alphavbeta6)作为纤维连接蛋白粘附和迁移介质的协同作用。该细胞系自发表达所有三种纤维连接蛋白结合整合素。此外,转化生长因子- β 1 (tgfβ 1)强烈而特异性地上调了α - β 6整合素的表达,而其他整合素在细胞表面的数量几乎保持不变。TGFbeta1可促进HaCaT角质形成细胞在纤维连接蛋白上的粘附、扩散和运动。基于抗体阻断实验,未处理和tgfbeta1处理的HaCaT细胞都使用alphavbeta6整合素作为其主要的纤维连接蛋白受体来进行细胞扩散。与tgfbeta1处理的细胞相比,未经处理的细胞也需要alpha5beta1整合素才能最大限度地在纤维连接蛋白上扩散。阻断这两种受体的抗体组合完全阻止了未经治疗和tgfbeta1治疗的细胞的扩散。单个HaCaT细胞通过纤维连接蛋白包被膜的触致运动再次主要依赖于alphavbeta6整合素,而在未处理和tgfbeta1处理的HaCaT细胞中,alphavbeta1和alpha5beta1整合素的作用较小。然而,与趋向性不同的是,HaCaT细胞片的横向迁移主要由beta1整合素介导,而alphavbeta6整合素的作用较小。迁移过程似乎涉及许多β 1整合素,当存在阻断抗体时,这些整合素可以自适应地相互替换。因此,角质形成细胞似乎使用不同的纤维连接蛋白受体来实现不同的功能,如细胞扩散、趋向性和横向迁移。细胞还可以通过转换到同一配体的另一个受体来适应一个受体不起作用的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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