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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Effects of a thiolate axial ligand on the π→π~* electronic states of oxoferryl porphyrins: a study of the optical and resonance Raman spectra of compounds I and II of chloroperoxidase
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Effects of a thiolate axial ligand on the π→π~* electronic states of oxoferryl porphyrins: a study of the optical and resonance Raman spectra of compounds I and II of chloroperoxidase

机译:硫醇盐轴向配体对草索菲卟啉π→π〜*电子态的影响:氯过氧化物酶化合物I和II的光学和共振拉曼光谱研究

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摘要

Optical absorption and resonance Raman spectra have been investigated for enzymatic intermediates, compounds I and II, of chloroperoxidase (CPO) which contains a thiolate-ligated iron porphyrin. Compound I of CPO (CPO-I), an oxoferryl porphyrin π cation radical, gave an apparently asymmetric single-peaked Soret band at 367 nm, for which band fitting analyses revealed the presence of two transition bands around 365 and 415 nm. Compound II of CPO (CPO-II), an oxoferryl neutral porphyrin, gave a split Soret spectrum with two bands (blue and red Soret bands) at 373 and 436 nm. Thus both CPO-I and CPO-II can be categorized as hyperporphyrins. The maximum extinction coefficients (e_b and e_r) and energies (E_b and E_r) of the blue and red Soret bands of CPO-II were found to fall on an e_b/e_r versus E_b-E_r correlation line derived from data reported for six-coordinate ferrous derivatives of cytochrome P450 and CPO. Corresponding data for CPO-I did not fall on the correlation line. Resonance enhancement of the Fe~(IV)=O stretching (v_(FeO)) Raman band was found for CPO-I when Raman scattering was excited at wavelengths within both transition bands around 365 and 415 nm, while the v_(FeO) Raman band was not identified for CPO-II at any of the excitation wavelengths examined here. These findings suggest that the thiolate axial ligand causes Soret band splitting of CPO-II through configuration interaction between the sulfur→porphyrin e_g~* charge transfer and porphyrin a_(1u), a_(2u)→e_g~* transitions, while the FeO portion is important in determining the shape of the Soret band of CPO-I.
机译:已研究了含硫醇盐连接的卟啉铁的氯代过氧化物酶(CPO)的酶中间体,化合物I和II的光吸收和共振拉曼光谱。 CPO的化合物I(CPO-I)是草酰氧卟啉π阳离子基团,在367 nm处出现了明显不对称的单峰Soret带,对该带的拟合分析揭示了在365和415 nm附近存在两个过渡带。 CPO化合物II(CPO-II)是一种草索里中性卟啉,给出了Soret光谱分裂谱,在373和436 nm处有两个谱带(蓝色和红色Soret谱带)。因此,CPO-I和CPO-II都可以归类为高卟啉。发现CPO-II的蓝色和红色Soret谱带的最大消光系数(e_b和e_r)和能量(E_b和E_r)落在e_b / e_r与E_b-E_r相关线上,该相关线是根据六坐标报告的数据得出的细胞色素P450和CPO的亚铁衍生物。 CPO-1的相应数据未落在相关线上。当在约365和415 nm的两个跃迁带内的波长处激发拉曼散射时,发现CPO-1的Fe〜(IV)= O拉伸(v_(FeO))拉曼能带的共振增强。在此处检查的任何激发波长下,均未确定CPO-II的谱带。这些发现表明,硫醇盐轴向配体通过硫→卟啉e_g〜*电荷转移与卟啉a_(1u),a_(2u)→e_g〜*跃迁之间的构型相互作用引起CPO-II的Soret带分裂。在确定CPO-1的Soret带的形状方面很重要。

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