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首页> 外文期刊>Angewandte Chemie >Insights Into How Heme Reduction Potentials Modulate Enzymatic Activities of a Myoglobin-based Functional Oxidase
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Insights Into How Heme Reduction Potentials Modulate Enzymatic Activities of a Myoglobin-based Functional Oxidase

机译:血液降低电位如何调节基于肌红蛋白的功能氧化酶的酶活性

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摘要

Heme-copper oxidase (HCO) is a class of respiratory enzymes that use a heme-copper center to catalyze O-2 reduction to H2O. While heme reduction potential (E degrees') of different HCO types has been found to vary >500 mV, its impact on HCO activity remains poorly understood. Here, we use a set of myoglobin-based functional HCO models to investigate the mechanism by which heme E degrees' modulates oxidase activity. Rapid stopped-flow kinetic measurements show that increasing heme E degrees' by ca. 210 mV results in increases in electron transfer (ET) rates by 30-fold, rate of O-2 binding by 12-fold, O-2 dissociation by 35-fold, while decreasing O-2 affinity by 3-fold. Theoretical calculations reveal that E degrees' modulation has significant implications on electronic charge of both heme iron and O-2, resulting in increased O-2 dissociation and reduced O-2 affinity at high E degrees' values. Overall, this work suggests that fine-tuning E degrees' in HCOs and other heme enzymes can modulate their substrate affinity, ET rate and enzymatic activity.
机译:血红素铜氧化酶(HCO)是一类使用血红素铜中心催化O-2还原到H 2 O的呼吸酶。虽然发现不同HCO类型的血红素降低潜力(e度')可以改变> 500 mV,但其对HCO活动的影响仍然很差。在这里,我们使用一套基于肌蛋白的功能性HCO模型来研究血红素E度'调节氧化酶活性的机制。快速停止流动动力学测量显示,增加血红素e度'通过加利福尼。 210mV导致电子转移(ET)速率的增加30倍,将O-2的速率达到12倍,将O-2离解的结合35倍,同时通过3倍降低O-2亲和力。理论计算表明,E度的调制对血红素铁和O-2的电子电荷产生了重大影响,导致O-2解离和降低高E度值的o-2亲和力。总体而言,这项工作表明,HCOS和其他血红素酶中的微调E度可以调节它们的底物亲和力,ET率和酶活性。

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