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首页> 外文期刊>Matrix biology: Journal of the International Society for Matrix Biology >Secreted protein acidic and rich in cysteine (SPARC/osteonectin/BM-40) binds to fibrinogen fragments D and E, but not to native fibrinogen.
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Secreted protein acidic and rich in cysteine (SPARC/osteonectin/BM-40) binds to fibrinogen fragments D and E, but not to native fibrinogen.

机译:分泌的酸性蛋白,富含半胱氨酸(SPARC /骨连接蛋白/ BM-40),可与纤维蛋白原片段D和E结合,但不与天然纤维蛋白原结合。

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摘要

Secreted protein acidic and rich in cysteine (SPARC/osteonectin/BM-40) is a matricellular protein that functions in wound healing. Fibrinogen is a plasma protein involved in many aspects of wound healing, such as inflammation, fibrosis and thrombosis. In this study, the binding of SPARC to both native and plasmin-cleaved fibrinogen under physiological conditions was examined by the use of a surface plasmon resonance (SPR) biosensor. We show that SPARC binds to plasmin-cleaved fibrinogen, but not to native fibrinogen. SPARC binds to both fibrinogen fragments D and E fg D and fg E with similar dissociation constants (8.67 x 10(-8) M for Fg D and 1.61 x 10(-7) M for Fg E). Results from endothelial cell proliferation assays show that the binding of SPARC to Fg E suppressed the inhibition of proliferation by SPARC, whereas the binding of SPARC to Fg D did not influence the activity of SPARC on the cell cycle. The interaction of SPARC with fibrinogen fragments D and E, which are produced as a result of proteolytic activation of fibrinolysis, reveals potential storage sites in provisional extracellular matrix for SPARC during the wound healing process and indicates a regulatory role of SPARC in fibrinolysis and angiogenesis.
机译:分泌的酸性蛋白,富含半胱氨酸(SPARC / osteoectin / BM-40),是一种在伤口愈合中起作用的基质细胞蛋白。纤维蛋白原是一种涉及伤口愈合许多方面的血浆蛋白,例如炎症,纤维化和血栓形成。在这项研究中,通过使用表面等离振子共振(SPR)生物传感器检查了SPARC在生理条件下与天然和纤溶酶裂解的纤维蛋白原的结合。我们显示SPARC绑定到纤溶酶切割的纤维蛋白原,而不是天然纤维蛋白原。 SPARC以相似的解离常数(Fg D为8.67 x 10(-8)M,Fg E为1.61 x 10(-7)M)与血纤蛋白原片段D和E fg D和fg E结合。内皮细胞增殖试验的结果表明,SPARC与Fg E的结合抑制了SPARC对增殖的抑制,而SPARC与Fg D的结合并不影响SPARC在细胞周期上的活性。 SPARC与纤维蛋白溶解的蛋白水解激活产生的纤维蛋白原片段D和E的相互作用揭示了伤口愈合过程中SPARC临时细胞外基质中潜在的储存位点,并表明SPARC在纤维蛋白溶解和血管生成中的调节作用。

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