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Kinetics of N-substituted phenothiazines and N-substituted phenoxazines oxidation catalyzed by fungal laccases

机译:真菌漆酶催化N-取代吩噻嗪和N-取代吩恶嗪的氧化动力学

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摘要

Laccase-catalyzed oxidation of N-substituted phenothiazines and N-substituted phenoxazines was investigated at pH 5.5 and 25A degrees C. The recombinant laccase from Polyporus pinsitus (rPpL) and the laccase from Myceliophthora thermophila (rMtL) were used. The dependence of initial reaction rate on substrate concentration was analyzed by applying the laccase action scheme in which the laccase native intermediate (NI) reacts with a substrate forming reduced enzyme. The reduced laccase produces peroxide intermediate (PI) which in turn decays to the NI. The calculated constant (k(ox)) values of the PI formation are (6.1 +/- 3.1)x10(5) M(-1)s(-1) for rPpL and (2.5 +/- 0.9)x10(4) M(-1)s(-1) for rMtL. The bimolecular constants of the reaction of the native intermediate with electron donor (kred) vary in the interval from 2.2x10(5) to 2.1x10(7) M(-1)s(-1) for rPpL and from 1.3x10(2) to 1.8x10(5) M(-1)s(-1) for rMtL. The larger reactivity of rPpL in comparison to rMtL is associated with the higher redox potential of type I Cu of rPpL. The variation of k(red) values for both laccases correlates with the change of the redox potential of substrates. Following outer sphere (Marcus) electron transfer mechanism the calculated activationless electron transfer rate and the apparent reorganization energy are 5.0x107 M(-1)s(-1) and 0.29 eV, respectively.
机译:在pH 5.5和25A的温度下研究了漆酶催化的N-取代的吩噻嗪和N-取代的吩恶嗪的氧化。使用得自猪Poly的重组漆酶(rPpL)和得自嗜热毁丝霉的漆酶(rMtL)。通过应用漆酶作用方案分析初始反应速率对底物浓度的依赖性,其中漆酶天然中间体(NI)与底物反应形成还原酶。还原的漆酶产生过氧化物中间体(PI),而后者又退化为NI。 PI形成的计算常数(k(ox))值为rPpL为(6.1 +/- 3.1)x10(5)M(-1)s(-1)和(2.5 +/- 0.9)x10(4) rMtL的M(-1)s(-1)。天然中间体与电子供体(kred)反应的双分子常数在rPpL的范围从2.2x10(5)到2.1x10(7)M(-1)s(-1)和1.3x10(2)之间变化)至rMtL的1.8x10(5)M(-1)s(-1)。与rMtL相比,rPpL的反应性更大,这与rPpL的I Cu型氧化还原电位更高有关。两个漆酶的k(红色)值的变化与底物的氧化还原电势的变化相关。遵循外球(马库斯)电子传输机制,计算出的无活化电子传输速率和表观重组能分别为5.0x107 M(-1)s(-1)和0.29 eV。

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