Webster D A, Orii Y
J Biol Chem. 1977 Mar 25;252(6):1834-6.
The oxygenerated form of cytochrome o can be readily observed in whole cell suspensions of Vitreoscilla because it is the predominant steady state form of the cytochrome in respiring cells. When oxygen is introduced to an anaerobic suspension of cells, the steady state is established immediately and absorption maxima are observed at 578, 545, and 425 nm in difference spectra using ammonium persulfate-oxidized cells as reference. The oxygenerated form of cytochrome o is identified as the predominant steady state species during turnover of the cytochrome in vivo from the close coincidence of these spectra with those obtained using purified cytochrome. When the dissolved oxygen is consumed, the spectrum of the oxygenated form is replaced by the spectrum of the reduced form. Glutamate increased the respiration of these cells and decreased the duration of the steady state. Spectra of the oxygenated form of cytochrome o could also be obtained by using starved cells as reference, i.e. (untreated cells) - (starved cells) difference spectra. These results implicate the oxygenated form of cytochrome o as an active intermediate in terminal electron transport of these cells. In the presence of 1 mM cyanide, which inhibits the respiration of Vitreoscilla, the duration of the steady state was increased and the steady state spectrum was altered, showing that turnover of the cytochrome was inhibitied and formation of the oxygenated form wsa decreased. All these results suggest that the cyclic changes of cytochrome o in terminal respiration involve the oxidized, reduced, and oxygenated forms.
在透明颤菌的全细胞悬浮液中可以很容易地观察到细胞色素o的氧合形式,因为它是呼吸细胞中细胞色素的主要稳态形式。当向厌氧细胞悬浮液中通入氧气时,稳态会立即建立,并且在以过硫酸铵氧化的细胞作为参比的差示光谱中,在578、545和425nm处观察到吸收最大值。细胞色素o的氧合形式被确定为在体内细胞色素周转过程中的主要稳态物种,因为这些光谱与使用纯化细胞色素获得的光谱非常吻合。当溶解氧被消耗时,氧合形式的光谱被还原形式的光谱所取代。谷氨酸增加了这些细胞的呼吸作用,并缩短了稳态持续时间。细胞色素o的氧合形式的光谱也可以通过以饥饿细胞作为参比来获得,即(未处理细胞)-(饥饿细胞)差示光谱。这些结果表明细胞色素o的氧合形式是这些细胞末端电子传递中的一种活性中间体。在存在1mM氰化物的情况下(氰化物会抑制透明颤菌的呼吸作用),稳态持续时间增加,稳态光谱发生改变,这表明细胞色素的周转受到抑制,氧合形式的形成减少。所有这些结果表明,细胞色素o在末端呼吸中的循环变化涉及氧化、还原和氧合形式。