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Theoretical analysis of the two-electron transfer reaction and experimental studies with surface-confined cytochrome c peroxidase using large-amplitude fourier transformed AC Voltammetry

机译:大振幅傅里叶变换交流伏安法对表面电子限的细胞色素c过氧化物酶进行双电子转移反应的理论分析和实验研究

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A detailed analysis of the cooperative two-electron transfer of surface-confined cytochrome c peroxidase (CcP) in contact with pH 6.0 phosphate buffer solution has been undertaken. This investigation is prompted by the prospect of achieving a richer understanding of this biologically important system via the employment of kinetically sensitive, but background devoid, higher harmonic components available in the large-amplitude Fourier transform ac voltammetric method. Data obtained from the conventional dc cyclic voltammetric method are also provided for comparison. Theoretical considerations based on both ac and dc approaches are presented for cases where reversible or quasi-reversible cooperative two-electron transfer involves variation in the separation of their reversible potentials, including potential inversion (as described previously for solution phase studies), and reversibility of the electrode processes. Comparison is also made with respect to the case of a simultaneous two-electron transfer process that is unlikely to occur in the physiological situation. Theoretical analysis confirms that the ac higher harmonic components provide greater sensitivity to the various mechanistic nuances that can arise in two-electron surface-confined processes. Experimentally, the ac perturbation with amplitude and frequency of 200 mV and 3.88 Hz, respectively, was employed to detect the electron transfer when CcP is confined to the surface of a graphite electrode. Simulations based on cooperative two-electron transfer with the employment of reversible potentials of 0.745 ± 0.010 V, heterogeneous electron transfer rate constants of between 3 and 10 s ~(-1) and charge transfer coefficients of 0.5 for both processes fitted experimental data for the fifth to eighth ac harmonics. Imperfections in theory-experiment comparison are consistent with kinetic and thermodynamic dispersion and other nonidealities not included in the theory used to model the voltammetry of surface-confined CcP.
机译:已对与pH 6.0磷酸盐缓冲溶液接触的表面受限细胞色素c过氧化物酶(CcP)的协同电子转移进行了详细的分析。通过使用动力学敏感但背景欠缺的大振幅傅里叶变换交流伏安法中可用的高次谐波成分,可以更深入地了解这一重要的生物系统,从而推动了这项研究。还提供了从常规直流循环伏安法获得的数据以进行比较。提出了基于交流和直流两种方法的理论考虑,适用于可逆或准可逆协同电子转移涉及可逆电位分离变化的情况,包括电位反转(如先前在溶液相研究中所述)和电极过程。还针对在生理情况下不太可能发生的同时电子转移过程进行比较。理论分析证实,交流高次谐波分量对双电子表面受限过程中可能出现的各种机械细微差别提供了更高的灵敏度。实验上,当CcP限制在石墨电极表面时,分别使用振幅和频率分别为200 mV和3.88 Hz的交流扰动来检测电子转移。基于协同双电子转移的模拟,利用两个可逆电势0.745±0.010 V,非均质电子转移速率常数在3到10 s〜(-1)之间,两个过程的电荷转移系数为0.5拟合了实验数据。五到八次交流谐波。理论-实验比较中的缺陷与动力学和热力学色散以及在表面受限CcP的伏安法建模理论中未包括的其他非理想性相一致。

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