Zaslavsky D, Smirnova I A, Adelroth P, Brzezinski P, Gennis R B
Department of Biochemistry, University of Illinois, Urbana 61801, USA.
Biochemistry. 1999 Feb 23;38(8):2307-11. doi: 10.1021/bi9822832.
The reaction between mixed-valence (MV) cytochrome c oxidase from beef heart with H2O2 was investigated using the flow-flash technique with a high concentration of H2O2 (1 M) to ensure a fast bimolecular interaction with the enzyme. Under anaerobic conditions the reaction exhibits 3 apparent phases. The first phase (tau congruent with 25 micros) results from the binding of one molecule of H2O2 to reduced heme a3 and the formation of an intermediate which is heme a3 oxoferryl (Fe4+=O2-) with reduced CuB (plus water). During the second phase (tau congruent with 90 micros), the electron transfer from CuB+ to the heme oxoferryl takes place, yielding the oxidized form of cytochrome oxidase (heme a3 Fe3+ and CuB2+, plus hydroxide). During the third phase (tau congruent with 4 ms), an additional molecule of H2O2 binds to the oxidized form of the enzyme and forms compound P, similar to the product observed upon the reaction of the mixed-valence (i.e., two-electron reduced) form of the enzyme with dioxygen. Thus, within about 30 ms the reaction of the mixed-valence form of the enzyme with H2O2 yields the same compound P as does the reaction with dioxygen, as indicated by the final absorbance at 436 nm, which is the same in both cases. This experimental approach allows the investigation of the form of cytochrome c oxidase which has the heme a3 oxoferryl intermediate but with reduced CuB. This state of the enzyme cannot be obtained from the reaction with dioxygen and is potentially useful to address questions concerning the role of the redox state in CuB in the proton pumping mechanism.
采用流动闪光技术,在高浓度过氧化氢(1 M)条件下研究了牛心混合价态(MV)细胞色素c氧化酶与过氧化氢的反应,以确保与酶发生快速的双分子相互作用。在厌氧条件下,该反应呈现3个明显阶段。第一阶段(τ约为25微秒)是由于一分子过氧化氢与还原态血红素a3结合,并形成一种中间体,即带有还原态CuB(加水)的血红素a3氧合高铁(Fe4+=O2-)。在第二阶段(τ约为90微秒),电子从CuB+转移至血红素氧合高铁,产生细胞色素氧化酶的氧化形式(血红素a3 Fe3+和CuB2+,加氢氧根)。在第三阶段(τ约为4毫秒),另一分子过氧化氢与酶的氧化形式结合并形成化合物P,类似于在混合价态(即双电子还原)形式的酶与双氧反应时观察到的产物。因此,在约30毫秒内,酶的混合价态形式与过氧化氢的反应产生的化合物P与和双氧反应时相同,这由436 nm处的最终吸光度表明,两种情况下该吸光度相同。这种实验方法能够研究具有血红素a3氧合高铁中间体但CuB为还原态的细胞色素c氧化酶形式。这种酶的状态无法通过与双氧的反应获得,对于解决有关CuB的氧化还原状态在质子泵浦机制中的作用问题可能很有用。