ReQuimte, Centro de Química Fina e Biotecnologia, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516, Caparica, Portugal.
J Biol Inorg Chem. 2011 Aug;16(6):881-8. doi: 10.1007/s00775-011-0785-8. Epub 2011 May 6.
The activation mechanism of Pseudomonas stutzeri cytochrome c peroxidase (CCP) was probed through the mediated electrochemical catalysis by its physiological electron donor, P. stutzeri cytochrome c-551. A comparative study was carried out, by performing assays with the enzyme in the resting oxidized state as well as in the mixed-valence activated form, using cyclic voltammetry and a pyrolytic graphite membrane electrode. In the presence of both the enzyme and hydrogen peroxide, the peak-like signal of cytochrome c-551 is converted into a sigmoidal wave form characteristic of an E(r)C'(i) catalytic mechanism. An intermolecular electron transfer rate constant of (4 ± 1) × 10(5) M(-1) s(-1) was estimated for both forms of the enzyme, as well as a similar Michaelis-Menten constant. These results show that neither the intermolecular electron transfer nor the catalytic activity is kinetically controlled by the activation mechanism of CCP in the case of the P. stutzeri enzyme. Direct enzyme catalysis using protein film voltammetry was unsuccessful for the analysis of the activation mechanism, since P. stutzeri CCP undergoes an undesirable interaction with the pyrolytic graphite surface. This interaction, previously reported for the Paracoccus pantotrophus CCP, induces the formation of a non-native conformation state of the electron-transferring haem, which has a redox potential 200 mV lower than that of the native state and maintains peroxidatic activity.
通过其生理电子供体假单胞菌细胞色素 c-551 的介导电化学催化作用,研究了假单胞菌细胞色素 c 过氧化物酶(CCP)的激活机制。通过使用循环伏安法和热解石墨膜电极,对酶在静止氧化状态和混合价激活形式下进行了测定,进行了对比研究。在同时存在酶和过氧化氢的情况下,细胞色素 c-551 的峰形信号转化为特征为 E(r)C'(i) 催化机制的正弦波形式。对于酶的两种形式,估计了(4±1)×10(5) M(-1) s(-1)的分子间电子转移速率常数以及相似的米氏常数。这些结果表明,在假单胞菌酶的情况下,CCP 的激活机制既不会影响分子间电子转移,也不会影响催化活性的动力学控制。由于假单胞菌 CCP 与热解石墨表面发生了不需要的相互作用,因此使用蛋白质膜伏安法直接进行酶催化分析是不成功的。这种相互作用先前在副球菌泛养单胞菌 CCP 中已有报道,它诱导了电子转移血红素的非天然构象状态的形成,该状态的氧化还原电位比天然状态低 200 mV,并保持过氧化物酶活性。