【2h】

Heme-thiolate ferryl of aromatic peroxygenase is basic and reactive

机译:芳香族过氧化酶的血红素硫醇盐基是碱性的具有反应性

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摘要

A kinetic and spectroscopic characterization of the ferryl intermediate (APO-II) from APO, the heme-thiolate peroxygenase from Agrocybe aegerita, is described. APO-II was generated by reaction of the ferric enzyme with metachloroperoxybenzoic acid in the presence of nitroxyl radicals and detected with the use of rapid-mixing stopped-flow UV-visible (UV-vis) spectroscopy. The nitroxyl radicals served as selective reductants of APO-I, reacting only slowly with APO-II. APO-II displayed a split Soret UV-vis spectrum (370 nm and 428 nm) characteristic of thiolate ligation. Rapid-mixing, pH-jump spectrophotometry revealed a basic pKa of 10.0 for the FeIV−O−H of APO-II, indicating that APO-II is protonated under typical turnover conditions. Kinetic characterization showed that APO-II is unusually reactive toward a panel of benzylic C−H and phenolic substrates, with second-order rate constants for C−H and O−H bond scission in the range of 10–107 M−1⋅s−1. Our results demonstrate the important role of the axial cysteine ligand in increasing the proton affinity of the ferryl oxygen of APO intermediates, thus providing additional driving force for C−H and O−H bond scission.
机译:描述了来自APO的渡草中间体(APO-II),即来自Agrocybe aegerita的血红素硫醇过氧化物酶的动力学和光谱表征。 APO-II是由铁酶与间氯过氧苯甲酸在硝基氧基存在下反应生成的,并使用快速混合停止流UV-可见(UV-vis)光谱进行检测。硝酰基自由基充当APO-I的选择性还原剂,仅与APO-II缓慢反应。 APO-II显示了硫醇盐连接的特征Soret紫外可见光谱(370 nm和428 nm)。快速混合,pH跳跃分光光度法显示APO-II的Fe IV -OH的基本pKa为10.0,表明APO-II在典型的转换条件下被质子化。动力学表征表明,APO-II对一组苄基CH和酚类底物具有异常的反应性,CH和OH键断裂的二阶速率常数在10-10 7 < / sup> M -1 ⋅s -1 。我们的研究结果证明了轴向半胱氨酸配体在增加APO中间体的ferryl氧的质子亲和力中的重要作用,从而为CH和OH键断裂提供了额外的驱动力。

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