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用纯化成分重构的假单胞菌AM1的甲胺氧化系统。

The methylamine oxidizing system of Pseudomonas AM1 reconstituted with purified components.

作者信息

Fukumori Y, Yamanaka T

出版信息

J Biochem. 1987 Feb;101(2):441-5. doi: 10.1093/oxfordjournals.jbchem.a121929.

Abstract

The electron transport system coupled to the oxidation of methylamine in Pseudomonas AM1 was investigated by reconstituting it from the highly purified components. A mixture of methylamine dehydrogenase, cytochrome cH and cytochrome c oxidase (= cytochrome aa3) actively oxidized methylamine (161 mol of O2 consumed/mol of heme a of cytochrome c oxidase X min). In this system, addition of amicyanin did not affect the oxygen consumption rate. The oxygen consumption rate of the cell-free extract prepared from the cells cultivated in a copper-deficient medium was directly proportional to the amount of amicyanin added, and extrapolation to zero copper concentration gave a value of 28 mol of O2 consumed/mol of heme a of cytochrome c oxidase X min. These results suggest that methylamine oxidation in the bacterium can occur at least to some extent without participation of amicyanin.

摘要

通过用高度纯化的组分进行重组,研究了假单胞菌AM1中与甲胺氧化偶联的电子传递系统。甲胺脱氢酶、细胞色素cH和细胞色素c氧化酶(=细胞色素aa3)的混合物能积极氧化甲胺(每摩尔细胞色素c氧化酶的血红素a每分钟消耗161摩尔O2)。在该系统中,添加氨蓝蛋白不影响耗氧率。从在缺铜培养基中培养的细胞制备的无细胞提取物的耗氧率与添加的氨蓝蛋白量成正比,外推至零铜浓度时,每摩尔细胞色素c氧化酶的血红素a每分钟消耗O2的值为28摩尔。这些结果表明,该细菌中甲胺氧化至少在一定程度上可以在没有氨蓝蛋白参与的情况下发生。

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