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纤连蛋白的III-1模块包含一个与纤连蛋白氨基末端区域结合的构象依赖性结合位点。

Fibronectin's III-1 module contains a conformation-dependent binding site for the amino-terminal region of fibronectin.

作者信息

Hocking D C, Sottile J, McKeown-Longo P J

机构信息

Department of Physiology and Cell Biology, Albany Medical College, New York 12208.

出版信息

J Biol Chem. 1994 Jul 22;269(29):19183-7.

PMID:8034677
Abstract

Cultured fibroblasts express binding sites for the amino-terminal region of fibronectin on their cell surface that mediate the assembly of soluble fibronectin into disulfide-stabilized fibrils. These binding sites have been termed matrix assembly sites and have been studied in binding assays using a 125I-labeled 70-kDa fragment derived from the amino terminus of fibronectin. In an attempt to isolate the protein(s) responsible for binding the 70-kDa fragment, cell surface proteins were cleaved from fibroblast monolayers by mild trypsinization. Trypsinization of monolayers generated a series of fibronectin fragments that bound the 125I-labeled 70-kDa fragment by ligand blot assay and affinity chromatography. All of the fibronectin fragments that bound the 70-kDa fragment contained the III-1 module. In solid phase binding assays, the 125I-labeled 70-kDa fragment bound preferentially to reduced fibronectin as compared with unreduced fibronectin fragments. Binding of the 125I-labeled 70-kDa fragment to reduced fibronectin was inhibited by a monoclonal antibody directed against the III-1 domain. Isolated III-1, however, did not bind the 125I-labeled 70-kDa fragment when adsorbed to plastic tissue culture wells. Heat denaturation of III-1 prior to adsorption conferred 70-kDa fragment binding properties on the isolated module. The 125I-labeled 70-kDa fragment did not bind to heat-denatured III-2, suggesting that 70-kDa fragment binding was a property of the III-1 module and not a general characteristic of all type III modules. The binding of 125I-labeled 70-kDa fragment to III-1 was of high affinity (KD = 1.8 x 10(-8) M). These results indicate that a binding site for the 70-kDa amino terminus of fibronectin is contained within a cryptic site found in the first type III module of fibronectin. Unfolding of the III-1 module on the cell surface may control matrix assembly site expression and represent an important step in the initiation of cell-dependent fibronectin polymerization.

摘要

培养的成纤维细胞在其细胞表面表达纤连蛋白氨基末端区域的结合位点,这些位点介导可溶性纤连蛋白组装成二硫键稳定的纤维。这些结合位点被称为基质组装位点,并已在结合试验中使用从纤连蛋白氨基末端衍生的125I标记的70 kDa片段进行了研究。为了分离负责结合70 kDa片段的蛋白质,通过温和的胰蛋白酶消化从成纤维细胞单层中切割细胞表面蛋白。单层的胰蛋白酶消化产生了一系列通过配体印迹分析和亲和色谱结合125I标记的70 kDa片段的纤连蛋白片段。所有结合70 kDa片段的纤连蛋白片段都包含III-1模块。在固相结合试验中,与未还原的纤连蛋白片段相比,125I标记的70 kDa片段优先结合还原的纤连蛋白。针对III-1结构域的单克隆抗体抑制了125I标记的70 kDa片段与还原纤连蛋白的结合。然而,分离的III-1吸附到塑料组织培养孔时不结合125I标记的70 kDa片段。吸附前III-1的热变性赋予分离的模块70 kDa片段结合特性。125I标记的70 kDa片段不与热变性的III-2结合,表明70 kDa片段结合是III-1模块的特性,而不是所有III型模块的普遍特征。125I标记的70 kDa片段与III-1的结合具有高亲和力(KD = 1.8 x 10(-8) M)。这些结果表明,纤连蛋白70 kDa氨基末端的结合位点包含在纤连蛋白第一个III型模块中的一个隐蔽位点内。细胞表面III-1模块的展开可能控制基质组装位点的表达,并代表细胞依赖性纤连蛋白聚合起始的重要步骤。

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