Papa Sergio, Capitanio Giuseppe, Luca Martino Pietro
Department of Medical Biochemistry, Biology and Physics, University of Bari, Policlinico, P zza G Cesare, 70124 Bari, Italy.
Biochim Biophys Acta. 2006 Sep-Oct;1757(9-10):1133-43. doi: 10.1016/j.bbabio.2006.04.009. Epub 2006 Apr 19.
In cytochrome c oxidase, oxido-reductions of heme a/Cu(A) and heme a3/Cu(B) are cooperatively linked to proton transfer at acid/base groups in the enzyme. H+/e- cooperative linkage at Fe(a3)/Cu(B) is envisaged to be involved in proton pump mechanisms confined to the binuclear center. Models have also been proposed which involve a role in proton pumping of cooperative H+/e- linkage at heme a (and Cu(A)). Observations will be presented on: (i) proton consumption in the reduction of molecular oxygen to H2O in soluble bovine heart cytochrome c oxidase; (ii) proton release/uptake associated with anaerobic oxidation/reduction of heme a/Cu(A) and heme a3/Cu(B) in the soluble oxidase; (iii) H+ release in the external phase (i.e. H+ pumping) associated with the oxidative (R-->O transition), reductive (O-->R transition) and a full catalytic cycle (R-->O-->R transition) of membrane-reconstituted cytochrome c oxidase. A model is presented in which cooperative H+/e- linkage at heme a/Cu(A) and heme a3/Cu(B) with acid/base clusters, C1 and C2 respectively, and protonmotive steps of the reduction of O2 to water are involved in proton pumping.
在细胞色素c氧化酶中,血红素a/Cu(A)和血红素a3/Cu(B)的氧化还原反应与该酶中酸/碱基团的质子转移协同相连。据推测,Fe(a3)/Cu(B)处的H⁺/e⁻协同连接参与了局限于双核中心的质子泵机制。也有人提出了一些模型,其中涉及血红素a(和Cu(A))处的协同H⁺/e⁻连接在质子泵作用中的作用。将展示以下观察结果:(i) 可溶性牛心细胞色素c氧化酶中将分子氧还原为H₂O时的质子消耗;(ii) 可溶性氧化酶中与血红素a/Cu(A)和血红素a3/Cu(B)的厌氧氧化/还原相关的质子释放/摄取;(iii) 与膜重构细胞色素c氧化酶的氧化(R→O转变)、还原(O→R转变)和完整催化循环(R→O→R转变)相关的外相中H⁺释放(即H⁺泵浦)。提出了一个模型,其中血红素a/Cu(A)和血红素a3/Cu(B)分别与酸/碱簇C1和C2的协同H⁺/e⁻连接以及O₂还原为水的质子动力步骤参与了质子泵浦。