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Mapping of the human plasmin domain recognized by the unique plasmin receptor of group A streptococci.

机译:A组链球菌的独特纤溶酶受体识别的人纤溶酶结构域图谱。

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A high-affinity surface receptor for human plasmin has been reported on certain group A streptococci. To map the region of the plasmin molecule that binds to the bacterial receptor, isolated domains of plasmin were tested for their ability to inhibit the binding of intact radiolabeled plasmin to receptor-positive bacteria. Complete inhibition of binding of labeled plasmin to bacteria by isolated heavy chains was achieved, but this inhibition was not as efficient on a molar basis when compared with that of unlabeled plasmin. By contrast, a conformationally altered form of native plasminogen was found to bind to bacteria and was as efficient a competitive inhibitor as intact plasmin was. The results of this study indicate that the selective binding of human plasmin to a group A streptococcus is dependent on structures present in the conformationally altered form of native plasminogen or plasmin that are not found on the native zymogen, the plasminogen with NH2-terminal glutamic acid.
机译:在某些A组链球菌上已经报道了人纤溶酶的高亲和力表面受体。为了绘制与细菌受体结合的纤溶酶分子区域,对分离的纤溶酶结构域测试了其抑制完整的放射性标记纤溶酶与受体阳性细菌结合的能力。通过分离的重链可以完全抑制标记的纤溶酶与细菌的结合,但是与未标记的纤溶酶相比,这种抑制作用在摩尔基础上并不那么有效。相比之下,发现天然纤溶酶原的构象改变形式与细菌结合,并且与完整的纤溶酶一样有效地成为竞争性抑制剂。这项研究的结果表明,人纤溶酶与A组链球菌的选择性结合取决于以天然纤溶酶原或纤溶酶的构象改变形式存在的结构,而这种结构在天然酶原(带有NH2末端谷氨酸的纤溶酶原)中找不到。

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