Siletsky Sergey A, Belevich Ilya, Wikström Mårten, Soulimane Tewfik, Verkhovsky Michael I
Department of Molecular Energetics of Microorganisms, Lomonosov Moscow State University, Moscow, Russian Federation.
Biochim Biophys Acta. 2009 Mar;1787(3):201-5. doi: 10.1016/j.bbabio.2008.12.020.
The kinetics of single-electron injection into the oxidized nonrelaxed state (OH --> EH transition) of the aberrant ba3 cytochrome oxidase from Thermus thermophilus, noted for its lowered efficiency of proton pumping, was investigated by time-resolved optical spectroscopy. Two main phases of intraprotein electron transfer were resolved. The first component (tau approximately 17 mus) reflects oxidation of CuA and reduction of the heme groups (low-spin heme b and high-spin heme a3 in a ratio close to 50:50). The subsequent component (tau 420 mus) includes reoxidation of both hemes by CuB. This is in significant contrast to the OH--> EH transition of the aa3-type cytochrome oxidase from Paracoccus denitrificans, where the fastest phase is exclusively due to transient reduction of the low-spin heme a, without electron equilibration with the binuclear center. On the other hand, the one-electron reduction of the relaxed O state in ba3 oxidase was similar to that in aa3 oxidase and only included rapid electron transfer from CuA to the low-spin heme b. This indicates a functional difference between the relaxed O and the pulsed OH forms also in the ba3 oxidase from T. thermophilus.
嗜热栖热菌异常的ba3细胞色素氧化酶以其降低的质子泵浦效率而闻名,通过时间分辨光谱研究了单电子注入其氧化的非松弛态(OH→EH转变)的动力学。解析出了蛋白质内电子转移的两个主要阶段。第一个成分(τ约为17微秒)反映了CuA的氧化和血红素基团(低自旋血红素b和高自旋血红素a3的比例接近50:50)的还原。随后的成分(τ为420微秒)包括CuB对两个血红素的再氧化。这与反硝化副球菌aa3型细胞色素氧化酶的OH→EH转变形成显著对比,在后者中,最快的阶段完全是由于低自旋血红素a的瞬时还原,而没有与双核中心的电子平衡。另一方面,ba3氧化酶中松弛的O态的单电子还原与aa3氧化酶中的相似,仅包括从CuA到低自旋血红素b的快速电子转移。这表明嗜热栖热菌的ba3氧化酶中松弛的O态和脉冲的OH态之间也存在功能差异。