QUIE P G, WANNAMAKER L W
J Bacteriol. 1961 Nov;82(5):770-83. doi: 10.1128/jb.82.5.770-783.1961.
Quie, Paul G. (University of Minnesota, Minneapolis) and Lewis W. Wannamaker. Staphylococcal Muller phenomenon: relationship to the plasminogen-plasmin system. J. Bacteriol. 82:770-783. 1961.-The staphylococcal factor that produces particulate proteolysis (Muller phenomenon) in whole blood or hemoglobinserum agar plates has been obtained in supernatants from broth cultures. This has facilitated study of the phenomenon in a sterile system. The bacterial factor has been partially separated from other extracellular products by starch zone electrophoresis. Staphylococcal Muller factor and staphylokinase are similar in heat stability, in electrophoretic mobility, and in activation of a serum proteolytic system. A relationship of the Muller phenomenon to the plasminogen-plasmin system is also suggested by the observation that purified plasminogen may be substituted for serum in the sterile system, and by the finding that inhibitors of the plasminogen-plasmin system also inhibit the Muller phenomenon. Although growing colonies of streptococci fail to exhibit the Muller phenomenon, particulate proteolysis can be demonstrated with streptokinase, using a double-diffusion technique. A similar phenomenon can be produced with urine, suggesting that urokinase may substitute for the bacterial activators in the Muller phenomenon. Although evidence from other sources suggests that the serum Muller factor is particulate, the serum factor appears to be freely diffusible in agar and is not readily sedimented in the ultracentrifuge.
奎伊,保罗·G.(明尼苏达大学,明尼阿波利斯)和刘易斯·W.万纳梅克。葡萄球菌穆勒现象:与纤溶酶原 - 纤溶酶系统的关系。《细菌学杂志》82:770 - 783。1961年。——在全血或血红蛋白血清琼脂平板上产生颗粒状蛋白水解作用(穆勒现象)的葡萄球菌因子已从肉汤培养物的上清液中获得。这便于在无菌系统中研究该现象。通过淀粉区带电泳已将细菌因子与其他细胞外产物部分分离。葡萄球菌穆勒因子和葡萄球菌激酶在热稳定性、电泳迁移率以及激活血清蛋白水解系统方面相似。纯化的纤溶酶原可在无菌系统中替代血清,以及纤溶酶原 - 纤溶酶系统的抑制剂也抑制穆勒现象这一发现,也提示了穆勒现象与纤溶酶原 - 纤溶酶系统的关系。尽管生长的链球菌菌落未表现出穆勒现象,但使用双扩散技术用链激酶可证明颗粒状蛋白水解作用。尿液也可产生类似现象,这表明尿激酶可能在穆勒现象中替代细菌激活剂。尽管来自其他来源的证据表明血清穆勒因子是颗粒状的,但血清因子在琼脂中似乎可自由扩散,且在超速离心机中不易沉淀。