Vilhjálmsdóttir Jóhanna, Johansson Ann-Louise, Brzezinski Peter
Department of Biochemistry and Biophysics, The Arrhenius Laboratories for Natural Sciences, Stockholm University, SE-106 91 Stockholm, Sweden.
Sci Rep. 2015 Aug 27;5:12047. doi: 10.1038/srep12047.
In cytochrome c oxidase electron transfer from cytochrome c to O2 is linked to transmembrane proton pumping, which contributes to maintaining a proton electrochemical gradient across the membrane. The mechanism by which cytochrome c oxidase couples the exergonic electron transfer to the endergonic proton translocation is not known, but it presumably involves local structural changes that control the alternating proton access to the two sides of the membrane. Such redox-induced structural changes have been observed in X-ray crystallographic studies at residues 423-425 (in the R. sphaeroides oxidase), located near heme a. The aim of the present study is to investigate the functional effects of these structural changes on reaction steps associated with proton pumping. Residue Ser425 was modified using site-directed mutagenesis and time-resolved spectroscopy was used to investigate coupled electron-proton transfer upon reaction of the oxidase with O2. The data indicate that the structural change at position 425 propagates to the D proton pathway, which suggests a link between redox changes at heme a and modulation of intramolecular proton-transfer rates.
在细胞色素c氧化酶中,从细胞色素c到O₂的电子转移与跨膜质子泵浦相联系,这有助于维持跨膜的质子电化学梯度。细胞色素c氧化酶将放能的电子转移与吸能的质子转运偶联起来的机制尚不清楚,但推测它涉及局部结构变化,这些变化控制着质子交替进入膜的两侧。在靠近血红素a的423 - 425位残基(在球形红杆菌氧化酶中)的X射线晶体学研究中观察到了这种氧化还原诱导的结构变化。本研究的目的是研究这些结构变化对与质子泵浦相关的反应步骤的功能影响。使用定点诱变对Ser425残基进行修饰,并使用时间分辨光谱研究氧化酶与O₂反应时的电子 - 质子偶联转移。数据表明,425位的结构变化传播到D质子途径,这表明血红素a处的氧化还原变化与分子内质子转移速率的调节之间存在联系。