Malashenko Iu R, Romanovskaia V A, Sokolov I G, Kryshtab T P
Mikrobiologiia. 1976 Nov-Dec;45(6):1105-7.
Ethane and propane were found to be competitive inhibitors of methane oxidation. Obligate methylotrophs can oxidize ethane only in the presence of methane, i.e. co-oxidation of ethane takes place. Studies on the kinetics of simultaneous oxidation of ethane and methane have shown that their oxidation is catalysed by one and the same enzyme system, within one and the same enzyme active site; therefore, the absolute substrate specificity is absent. The reactions of methane and ethane oxidation are coupled since ethane can be oxidized only after the reduced coenzyme had been provided by the reaction of methane oxidation.
乙烷和丙烷被发现是甲烷氧化的竞争性抑制剂。专性甲基营养菌只能在甲烷存在的情况下氧化乙烷,即发生乙烷的共氧化。对乙烷和甲烷同时氧化动力学的研究表明,它们的氧化是由同一个酶系统在同一个酶活性位点催化的;因此,不存在绝对的底物特异性。甲烷和乙烷的氧化反应是偶联的,因为只有在甲烷氧化反应提供了还原型辅酶之后,乙烷才能被氧化。