Konstantinov A, Vygodina T, Andreev I M
FEBS Lett. 1986 Jul 7;202(2):229-34. doi: 10.1016/0014-5793(86)80692-5.
The rate of cyanide binding with the oxidized cytochrome-c oxidase in proteoliposomes is controlled by ionization of a protein group with pK approximately 6.7, the ligand reacting with the protonated enzyme only [(1983) Bioorg. Chem. (USSR) 9, 216-227]. As shown here, the kinetics of cyanide binding depends on the pH inside the proteoliposomes. The reaction rate is affected by the electrical potential difference across the proteoliposome membranes as if the a3-linked ionizable group exchanged H+ with the proteoliposome interior electrogenically. The data corroborate a hypothesis on the existence of a proton well communicating cytochrome oxidase O2-reducing center with the M-aqueous phase.
蛋白脂质体中氰化物与氧化型细胞色素c氧化酶的结合速率受pK约为6.7的蛋白质基团电离的控制,配体仅与质子化的酶反应[(1983)《生物有机化学》(苏联)9, 216 - 227]。如下所示,氰化物结合的动力学取决于蛋白脂质体内部的pH值。反应速率受跨蛋白脂质体膜的电势差影响,就好像与a3相连的可电离基团以电生方式与蛋白脂质体内部交换H⁺。这些数据证实了关于存在一个质子阱将细胞色素氧化酶的O₂还原中心与M水相连通的假说。