Insitut für Chemie, Technische Universität Berlin, Strasse des 17, Juni 135, 10623 Berlin, Germany.
J Phys Chem B. 2011 Sep 1;115(34):10368-74. doi: 10.1021/jp204665r. Epub 2011 Aug 9.
The role of the diheme cytochrome b (HoxZ) subunit in the electron transfer pathway of the membrane-bound [NiFe]-hydrogenase (MBH) heterotrimer from Ralstonia eutropha H16 has been investigated. The MBH in its native heterotrimeric state was immobilized on electrodes and subjected to spectroscopic and electrochemical analysis. Surface enhanced resonance Raman spectroscopy was used to monitor the redox and coordination state of the HoxZ heme cofactors while concomitant protein film voltammetric measurements gave insights into the catalytic response of the enzyme on the electrode. The entire MBH heterotrimer as well as its isolated HoxZ subunit were immobilized on silver electrodes coated with self-assembled monolayers of ω-functionalized alkylthiols, displaying the preservation of the native heme pocket structure and an electrical communication between HoxZ and the electrode. For the immobilized MBH heterotrimer, catalytic reduction of the HoxZ heme cofactors was observed upon H(2) addition. The catalytic currents of MBH with and without the HoxZ subunit were measured and compared with the heterogeneous electron transfer rates of the isolated HoxZ. On the basis of the spectroscopic and electrochemical results, we conclude that the HoxZ subunit under these artificial conditions is not primarily involved in the electron transfer to the electrode but plays a crucial role in stabilizing the enzyme on the electrode.
二血红素细胞色素 b(HoxZ)亚基在电子转移途径中的作用膜结合 [NiFe]-氢化酶(MBH)三聚体从 Ralstonia eutropha H16 已被调查。在其天然三聚体状态下的 MBH 固定在电极上,并进行光谱和电化学分析。表面增强共振拉曼光谱用于监测 HoxZ 血红素辅因子的氧化还原和配位状态,同时伴随的蛋白质膜伏安法测量深入了解酶在电极上的催化反应。整个 MBH 三聚体及其分离的 HoxZ 亚基都固定在涂有 ω-官能化烷基硫醇自组装单层的银电极上,显示出天然血红素口袋结构的保留和 HoxZ 与电极之间的电通信。对于固定化的 MBH 三聚体,在添加 H(2)时观察到 HoxZ 血红素辅因子的催化还原。测量了有和没有 HoxZ 亚基的 MBH 的催化电流,并与分离的 HoxZ 的非均相电子转移速率进行了比较。基于光谱和电化学结果,我们得出结论,在这些人为条件下,HoxZ 亚基主要不参与向电极的电子转移,而是在稳定酶在电极上起着关键作用。