Adhesion of cultured human kidney mesangial cells to native entactin: role of integrin receptors.

X Y Yi, E A Wayner, Y Kim, A J Fish
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引用次数: 25

Abstract

Entactin is an extracellular matrix glycoprotein which binds to laminin and is found in most renal basement membranes and in the glomerular mesangial matrix. In the present study, we have characterized specific integrin receptors on cultured human mesangial cells (CHMC) responsible for adhesion to native entactin. The integrin receptors alpha 2 beta 1, alpha 3 beta 1, alpha 5 beta 1, alpha v beta 3, alpha v beta 5, and alpha 6 complexed with either beta 1 or beta 4 could be immune precipitated from detergent extracts of metabolically labeled CHMC. Adhesion assays with inhibitory anti integrin monoclonal antibodies (mab) demonstrated that CHMC use both alpha v beta 3 and a beta 1-containing integrin to bind surfaces coated with native entactin. Optimal binding of CHMC to native entactin required the participation of cations. Using wild type and mutant recombinant entactin fragments, the binding site for the alpha v beta 3 receptor was localized to the RGD sequence on the rod or E domain of entactin. CHMC adhesion to mutant full length recombinant entactin ligands lacking the E domain RGD sequence confirmed the presence of ligand binding site(s) for beta 1 integrin receptor(s). Differences in CHMC binding characteristics to recombinant and full length entactin compared to native bovine basement membrane entactin were observed. This suggests that tertiary molecular structure may contribute to entactin ligand binding properties. Primary amino acid residue sequences and tertiary structure of entactin may play roles in forming functional cell attachment sites in native basement membrane entactin.

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培养的人肾系膜细胞与天然紧动蛋白的粘附:整合素受体的作用。
肠动蛋白是一种与层粘连蛋白结合的细胞外基质糖蛋白,存在于大多数肾基底膜和肾小球系膜基质中。在目前的研究中,我们在培养的人系膜细胞(CHMC)上鉴定了特异性整合素受体,这些受体负责与天然粘合蛋白的粘附。整合素受体α 2 β 1、α 3 β 1、α 5 β 1、α v β 3、α v β 5和α 6与β 1或β 4络合可从代谢标记的CHMC洗涤剂提取物中免疫沉淀。用抑制抗整合素单克隆抗体(mab)进行的粘附实验表明,CHMC使用α v β 3和含有β 1的整合素来结合涂有天然整合素的表面。CHMC与天然促动蛋白的最佳结合需要阳离子的参与。利用野生型和突变型重组entactin片段,α v β 3受体的结合位点定位在entactin的rod或E结构域的RGD序列上。CHMC与缺乏E结构域RGD序列的突变全长重组entactin配体的粘附证实了β 1整合素受体(s)的配体结合位点的存在。观察了CHMC与重组蛋白和全长肠动蛋白的结合特性与天然牛基底膜肠动蛋白的差异。这表明,三级分子结构可能有助于打结蛋白配体的结合特性。原生基膜肠动蛋白的初级氨基酸残基序列和三级结构可能与形成功能性细胞附着位点有关。
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