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通过β1亚基激活α4β1整合素可诱导对纤连蛋白中RGDS序列的识别。

Activation of the alpha 4 beta 1 integrin through the beta 1 subunit induces recognition of the RGDS sequence in fibronectin.

作者信息

Sánchez-Aparicio P, Dominguez-Jiménez C, Garcia-Pardo A

机构信息

Departamento de Inmunología, Consejo Superior de Investigaciones Científicas, Madrid, Spain.

出版信息

J Cell Biol. 1994 Jul;126(1):271-9. doi: 10.1083/jcb.126.1.271.

Abstract

Lymphocyte attachment to fibronectin is mainly mediated by the interaction of alpha 5 beta 1 and alpha 4 beta 1 integrins with the RGD and CS-1/Hep II sites, respectively. We have recently shown that the anti-beta 1 mAb TS2/16 can convert the partly active alpha 4 beta 1 present on certain hemopoietic cells that recognizes CS-1 but not Hep II, to a high avidity form that binds both ligands. In this report we have studied whether mAb TS2/16 also affects alpha 4 beta 1 ligand specificity. Incubation of the B cell lines Ramos and Daudi (which lack alpha 5 beta 1) with mAb TS2/16 induced specific attachment to an 80-kD fragment which lacks CS-1 and Hep II and contains the RGD sequence. mAbs anti-alpha 4 and the synthetic peptides CS-1 and IDAPS inhibited adhesion to the 80-kD fragment thus implying alpha 4 beta 1 as the receptor for this fragment. Interestingly, the synthetic peptide GRGDSPC and a 15-kD peptic fibronectin fragment containing the RGD sequence also inhibited B cell adhesion to the 80-kD fragment. Because we have previously shown that RGD peptides do not affect the constitutive function of alpha 4 beta 1, we tested whether TS2/16-activated alpha 4 beta 1 acquired the capacity to recognize RGD. Indeed RGD peptides inhibited TS2/16-treated B cell adhesion to a 38-kD fragment containing CS-1 and Hep II but did not affect binding of untreated cells to this fragment. An anti-fibronectin mAb reactive with an epitope on or near the RGD sequence also efficiently inhibited cell adhesion to the 80-kD fragment, indicating that the RGD sequence is a novel adhesive ligand for activated alpha 4 beta 1. These results emphasize the role of alpha 4 beta 1 as a receptor with different ligand specificities according to the activation state, a fact that may be important for lymphocyte migration, localization, and function.

摘要

淋巴细胞与纤连蛋白的附着主要是由α5β1和α4β1整合素分别与RGD及CS-1/Hep II位点的相互作用介导的。我们最近发现,抗β1单克隆抗体TS2/16可将某些造血细胞上存在的部分活性α4β1(其可识别CS-1但不能识别Hep II)转化为能结合两种配体的高亲和力形式。在本报告中,我们研究了单克隆抗体TS2/16是否也会影响α4β1的配体特异性。用单克隆抗体TS2/16孵育B细胞系Ramos和Daudi(它们缺乏α5β1)可诱导其特异性附着于一个80-kD片段,该片段缺乏CS-1和Hep II且含有RGD序列。抗α4单克隆抗体以及合成肽CS-1和IDAPS可抑制对80-kD片段的黏附,这表明α4β1是该片段的受体。有趣的是,合成肽GRGDSPC和一个含有RGD序列的15-kD胃蛋白酶消化的纤连蛋白片段也可抑制B细胞对80-kD片段的黏附。因为我们之前已表明RGD肽不影响α4β1的组成性功能,所以我们测试了TS2/16激活的α4β1是否获得了识别RGD的能力。实际上,RGD肽可抑制经TS2/16处理的B细胞对含有CS-1和Hep II的38-kD片段的黏附,但不影响未处理细胞对该片段的结合。一种与RGD序列上或其附近表位反应的抗纤连蛋白单克隆抗体也能有效抑制细胞对80-kD片段的黏附,这表明RGD序列是激活的α4β1的一种新的黏附配体。这些结果强调了α4β1作为一种根据激活状态具有不同配体特异性的受体的作用,这一事实可能对淋巴细胞迁移、定位和功能很重要。

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