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源自腱生蛋白-C的一种肽通过syndecan-4诱导β1整合素激活。

A peptide derived from tenascin-C induces beta1 integrin activation through syndecan-4.

作者信息

Saito Yohei, Imazeki Hisae, Miura Shogo, Yoshimura Tomohisa, Okutsu Hiroaki, Harada Yosei, Ohwaki Toshiyuki, Nagao Osamu, Kamiya Sadahiro, Hayashi Ryo, Kodama Hiroaki, Handa Hiroshi, Yoshida Toshimichi, Fukai Fumio

机构信息

Department of Molecular Patho-Physiology, Faculty of Pharmaceutical Sciences, Tokyo University of Science, Chiba 278-8510, Japan.

出版信息

J Biol Chem. 2007 Nov 30;282(48):34929-37. doi: 10.1074/jbc.M705608200. Epub 2007 Sep 26.

Abstract

Tenascin-C (TN-C) is unique for its cell adhesion modulatory function. We have shown that TNIIIA2, a synthetic 22-mer peptide derived from TN-C, stimulated beta1 integrin-mediated cell adhesion of nonadherent and adherent cell types, by inducing activation of beta1 integrin. The active site of TNIIIA2 appeared cryptic in the TN-C molecule but was exposed by MMP-2 processing of TN-C. The following results suggest that cell surface heparan sulfate (HS) proteoglycan (HSPG), including syndecan-4, participated in TNIIIA2-induced beta1 integrin activation: 1) TNIIIA2 bound to cell surface HSPG via its HS chains, as examined by photoaffinity labeling; 2) heparitinase I treatment of cells abrogated beta1 integrin activation induced by TNIIIA2; 3) syndecan-4 was isolated by affinity chromatography using TNIIIA2-immobilized beads; 4) small interfering RNA-based down-regulation of syndecan-4 expression reduced TNIIIA2-induced beta1 integrin activation, and consequent cell adhesion to fibronectin; 5) overexpression of syndecan-4 core protein enhanced TNIIIA2-induced activation of beta1 integrin. However, treatments that targeted the cytoplasmic region of syndecan-4, including ectopic expression of its mutant truncated with the cytoplasmic domains and treatment with protein kinase Calpha inhibitor Gö6976, did not influence the TNIIIA2 activity. These results suggest that a TNIIIA2-related matricryptic site of the TN-C molecule, exposed by MMP-2 processing, may have bound to syndecan-4 via its HS chains and then induced conformational change in beta1 integrin necessary for its functional activation. A lateral interaction of beta1 integrin with the extracellular region of the syndecan-4 molecule may be involved in this conformation change.

摘要

腱生蛋白-C(TN-C)因其细胞黏附调节功能而独具特色。我们已经表明,TNIIIA2是一种源自TN-C的合成22肽,通过诱导β1整合素的激活,刺激非贴壁和贴壁细胞类型的β1整合素介导的细胞黏附。TNIIIA2的活性位点在TN-C分子中似乎是隐蔽的,但通过TN-C的MMP-2加工而暴露。以下结果表明,包括syndecan-4在内的细胞表面硫酸乙酰肝素(HS)蛋白聚糖(HSPG)参与了TNIIIA2诱导的β1整合素激活:1)通过光亲和标记检测,TNIIIA2通过其HS链与细胞表面HSPG结合;2)用肝素酶I处理细胞可消除TNIIIA2诱导的β1整合素激活;3)使用固定有TNIIIA2的珠子通过亲和色谱法分离出syndecan-;4)基于小干扰RNA下调syndecan-4表达可降低TNIIIA2诱导的β1整合素激活,以及随后细胞对纤连蛋白的黏附;5)syndecan-4核心蛋白的过表达增强了TNIIIA2诱导的β1整合素激活。然而,针对syndecan-4细胞质区域的处理,包括其截短细胞质结构域的突变体的异位表达以及用蛋白激酶Cα抑制剂Gö6976处理,均不影响TNIIIA2的活性。这些结果表明,由MMP-2加工暴露的TN-C分子的与TNIIIA2相关的基质隐蔽位点,可能通过其HS链与syndecan-4结合,然后诱导β1整合素功能激活所需的构象变化。β1整合素与syndecan-4分子细胞外区域的侧向相互作用可能参与了这种构象变化。

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