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Heparin-Fibronectin Interactions in the Development of Extracellular Matrix Insolubility

机译:肝素-纤连蛋白相互作用在细胞外基质不溶性发展中的作用。

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摘要

During extracellular matrix (ECM) assembly, fibronectin (FN) fibrils are irreversibly converted into a detergent-insoluble form which, through FN’s multi-domain structure, can interact with collagens, matricellular proteins, and growth factors to build a definitive matrix. FN also has heparin/heparan sulfate (HS) binding sites. Using HS-deficient CHO cells, we show that the addition of soluble heparin significantly increased the amount of FN matrix that these cells assemble. Sulfated HS glycosaminoglycan (GAG) mimetics similarly increased FN assembly and demonstrated a dependence on GAG sulfation. The length of the heparin chains also plays a role in assembly. Chains of sufficient length to bind to two FN molecules gave maximal stimulation of assembly whereas shorter heparin had less of an effect. Using a decellularized fibroblast matrix for proteolysis, detergent fractionation, and mass spectrometry, we found that the predominant domain within insoluble fibril fragments is FN’s major heparin-binding domain HepII (modules III12–14). Multiple HepII domains bind simultaneously to a single heparin chain in size exclusion chromatography analyses. We propose a model in which heparin/HS binding to the HepII domain connects multiple FNs together to facilitate the formation of protein interactions for insoluble fibril assembly.
机译:在细胞外基质(ECM)组装过程中,纤连蛋白(FN)原纤维不可逆地转化为去污剂不可溶的形式,通过FN的多域结构,它可以与胶原蛋白,基质细胞蛋白和生长因子相互作用,从而形成确定的基质。 FN还具有肝素/硫酸乙酰肝素(HS)结合位点。使用HS缺陷的CHO细胞,我们显示可溶性肝素的添加显着增加了这些细胞组装的FN基质的量。硫酸化HS糖胺聚糖(GAG)模拟物类似地增加了FN装配,并证明了对GAG硫酸化的依赖性。肝素链的长度在组装中也起作用。足够长的链可以与两个FN分子结合,从而最大程度地刺激了装配,而较短的肝素的作用较小。使用脱细胞的成纤维细胞基质进行蛋白水解,去污剂分级分离和质谱分析,我们发现不溶性原纤维片段中的主要区域是FN的主要肝素结合域HepII(模块III12-14)。在尺寸排阻色谱分析中,多个HepII域同时与一条肝素链结合。我们提出了一个模型,其中肝素/ HS结合到HepII结构域将多个FN连接在一起,以促进不溶性原纤维装配的蛋白质相互作用的形成。

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