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首页> 外文期刊>The biochemical journal >Interaction of the small interstitial proteoglycans biglycan, decorin and fibromodulin with transforming growth factor β
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Interaction of the small interstitial proteoglycans biglycan, decorin and fibromodulin with transforming growth factor β

机译:小间质蛋白聚糖双糖聚糖,核心蛋白聚糖和纤维调节蛋白与转化生长因子β的相互作用

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pWe have analysed the interactions of three proteoglycans of the decorin family, decorin, biglycan and fibromodulin, with transforming growth factor beta (TGF-beta). The proteoglycan core proteins, expressed from human cDNAs as fusion proteins with Escherichia coli maltose-binding protein, each bound TGF-beta 1. They showed only negligible binding to several other growth factors. Intact decorin, biglycan and fibromodulin isolated from bovine tissues competed with the fusion proteins for the TGF-beta binding. Affinity measurements suggest a two-site binding model with Kd values ranging from 1 to 20 nM for a high-affinity binding site and 50 to 200 nM for the lower-affinity binding site. The stoichiometry indicated that the high-affinity binding site was present in one of ten proteoglycan core molecules and that each molecule contained a low-affinity binding site. Tissue-derived biglycan and decorin were less effective competitors for TGF-beta binding than fibromodulin or the non-glycosylated fusion proteins; removal of the chondroitin/dermatan sulphate chains of decorin and biglycan (fibromodulin is a keratan sulphate proteoglycan) increased the activities of decorin and biglycan, suggesting that the glycosaminoglycan chains may hinder the interaction of the core proteins with TGF-beta. The fusion proteins competed for the binding of radiolabelled TGF-beta to Mv 1 Lu cells and endothelial cells. Affinity labelling showed that the binding of TGF-beta to betaglycan and the type-I receptors in Mv 1 Lu cells and to endoglin in endothelial cells was reduced, but the binding to the type-II receptors was unaffected. TGF-beta 2 and 3 also bound to all three fusion proteins. Latent recombinant TGF-beta 1 precursor bound slightly to fibromodulin and not at all to decorin and biglycan. The results show that the three decorin-type proteoglycans each bind TGF-beta isoforms and that slight differences exist in their binding properties. They may regulate TGF-beta activities by sequestering TGF-beta into extracellular matrix./p
机译:>我们分析了decorin家族的三个蛋白聚糖,decorin,biglycan和fibromodulin与转化生长因子β(TGF-beta)的相互作用。蛋白聚糖核心蛋白从人cDNA中表达为与大肠杆菌麦芽糖结合蛋白的融合蛋白,每个都结合了TGF-β1。它们与其他几种生长因子的结合微不足道。从牛组织中分离的完整得体,双糖链蛋白和纤维调节蛋白与融合蛋白竞争TGF-β结合。亲和力测量表明一个两点结合模型,Kd值对于高亲和力结合位点为1到20 nM,对于低亲和力结合位点为50到200 nM。化学计量学表明高亲和力结合位点存在于十个蛋白聚糖核心分子之一中,并且每个分子均包含低亲和力结合位点。与纤维调节蛋白或非糖基化的融合蛋白相比,组织来源的双糖链蛋白聚糖和decorin对TGF-β结合的竞争性较差。去除decorin和biglycan的软骨素/硫酸皮肤素链(纤维调节蛋白是硫酸角质素蛋白聚糖)会增加decorin和biglycan的活性,这表明糖胺聚糖链可能会阻碍核心蛋白与TGF-β的相互作用。融合蛋白竞争放射性标记的TGF-β与Mv 1 Lu细胞和内皮细胞的结合。亲和标记显示,TGF-β与Mv 1 Lu细胞中的β聚糖和I型受体的结合以及与内皮细胞中内皮糖蛋白的结合减少,但与II型受体的结合不受影响。 TGF-beta 2和TGF-β3还与所有三种融合蛋白结合。潜在的重组TGF-β1潜在前体与纤维调节蛋白略微结合,而与核心蛋白聚糖和双糖链蛋白聚糖完全不结合。结果表明,三种核心蛋白聚糖型蛋白聚糖均结合TGF-β同工型,并且其结合特性存在细微差异。它们可能通过将TGF-β螯合到细胞外基质中来调节TGF-β的活性。

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