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新型隐球菌中酚氧化酶的生化研究及儿茶酚胺的利用

Biochemical studies of phenoloxidase and utilization of catecholamines in Cryptococcus neoformans.

作者信息

Polacheck I, Hearing V J, Kwon-Chung K J

出版信息

J Bacteriol. 1982 Jun;150(3):1212-20. doi: 10.1128/jb.150.3.1212-1220.1982.

Abstract

Protoplasts of Cryptococcus neoformans contain phenoloxidase as a membrane-bound enzyme. The enzyme appeared to be attached on the inner side of cytoplasmic membranes. Synthesis of the enzyme was derepressed by low levels of glucose but was not affected by the level of ammonium. Copper chelators which inhibited the phenoloxidase of other organisms did not affect cryptococcal enzymes. However, cyanide- or iron-chelating agents such as hydroximide derivates or 8-hydroxyquinoline were effective inhibitors, suggesting that cryptococcal phenoloxidase is an iron-containing enzyme. Phenoloxidase of C. neoformans catalyzed the oxidation of various diphenols via dopachrome and labile intermediates to melanin polymers. The kinetic constants (Km) of the phenoloxidase and the permease for dopamine and norepinephrine were low. The correlation between phenoloxidase and the preferential growth of C. neoformans in the host brain is discussed.

摘要

新型隐球菌的原生质体含有作为膜结合酶的酚氧化酶。该酶似乎附着在细胞质膜的内侧。低水平的葡萄糖可解除该酶的合成抑制,但不受铵水平的影响。抑制其他生物体酚氧化酶的铜螯合剂对隐球菌的酶没有影响。然而,氰化物或铁螯合剂如肟衍生物或8-羟基喹啉是有效的抑制剂,这表明隐球菌酚氧化酶是一种含铁酶。新型隐球菌的酚氧化酶通过多巴色素和不稳定中间体催化各种二酚氧化为黑色素聚合物。酚氧化酶和通透酶对多巴胺和去甲肾上腺素的动力学常数(Km)较低。文中讨论了酚氧化酶与新型隐球菌在宿主脑中优先生长之间的相关性。

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