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葡萄球菌细胞表面多糖与人纤维蛋白原的结合。

Binding of staphylococcal cell surface polysaccharide to human fibrinogen.

作者信息

Ohtomo T, Kobayashi T, Ohshima Y, Usui Y, Suganuma M, Yoshida K

机构信息

Department of Microbiology, St. Marianna University School of Medicine, Kawasaki, Japan.

出版信息

Can J Microbiol. 1990 Mar;36(3):206-10. doi: 10.1139/m90-035.

Abstract

The interaction between the binding site of a polysaccharide (called compact colony forming active substance (CCFAS)), obtained from the cell surface of a strain of Staphylococcus, and human fibrinogen (HF) was investigated. The CCFAS was found to bind specifically to both the B beta and gamma chains of HF at pH 7.0 and 8.0, and the A alpha chain at pH 5.0. The binding of CCFAS with fibrinogen fragments obtained by digestion with plasmin were also investigated. Fragments with Mr of 55,000, 24,000, and 19,000 were the major bands precipitated by CCFAS at pH 7.0 and 8.0. Fragments with Mr of 85,000 and 75,000 bound to CCFAS at pH 5.0. Binding of CCFAS (7 micrograms) with fibrinogen could be inhibited by 1.2 micrograms of B beta chain and 1.5 micrograms gamma chain at alkaline pH or 6.2 micrograms of the A alpha chain at pH 5.0. CCFAS was, therefore, assumed to be specifically bonded with HF molecules, in the alkaline range at least, resulting in compact colony forming activity in serum soft agar and paracoagulation.

摘要

对从一株葡萄球菌细胞表面获得的一种多糖(称为致密菌落形成活性物质(CCFAS))的结合位点与人类纤维蛋白原(HF)之间的相互作用进行了研究。发现CCFAS在pH 7.0和8.0时能特异性结合HF的Bβ链和γ链,在pH 5.0时能结合Aα链。还研究了CCFAS与纤溶酶消化产生的纤维蛋白原片段的结合情况。在pH 7.0和8.0时,CCFAS沉淀出的主要条带是分子量为55,000、24,000和19,000的片段。在pH 5.0时,分子量为85,000和75,000的片段与CCFAS结合。在碱性pH条件下,1.2微克的Bβ链和1.5微克的γ链或在pH 5.0时6.2微克的Aα链可抑制7微克CCFAS与纤维蛋白原的结合。因此,至少在碱性范围内,CCFAS被认为与HF分子特异性结合,从而在血清软琼脂中产生致密菌落形成活性和副凝固作用。

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