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Formation of Unstable and very Reactive Chemical Species Catalyzed by Metalloenzymes: A Mechanistic Overview

机译:金属酶催化不稳定和反应性强的化学物质的形成:机理概述

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摘要

Nature has tailored a wide range of metalloenzymes that play a vast array of functions in all living organisms and from which their survival and evolution depends on. These enzymes catalyze some of the most important biological processes in nature, such as photosynthesis, respiration, water oxidation, molecular oxygen reduction, and nitrogen fixation. They are also among the most proficient catalysts in terms of their activity, selectivity, and ability to operate at mild conditions of temperature, pH, and pressure. In the absence of these enzymes, these reactions would proceed very slowly, if at all, suggesting that these enzymes made the way for the emergence of life as we know today. In this review, the structure and catalytic mechanism of a selection of diverse metalloenzymes that are involved in the production of highly reactive and unstable species, such as hydroxide anions, hydrides, radical species, and superoxide molecules are analyzed. The formation of such reaction intermediates is very difficult to occur under biological conditions and only a rationalized selection of a particular metal ion, coordinated to a very specific group of ligands, and immersed in specific proteins allows these reactions to proceed. Interestingly, different metal coordination spheres can be used to produce the same reactive and unstable species, although through a different chemistry. A selection of hand-picked examples of different metalloenzymes illustrating this diversity is provided and the participation of different metal ions in similar reactions (but involving different mechanism) is discussed.
机译:大自然已经量身定制了各种各样的金属酶,这些金属酶在所有活生物体中都发挥着广泛的功能,而它们的生存和进化取决于它们。这些酶催化自然界中一些最重要的生物过程,例如光合作用,呼吸作用,水氧化,分子氧还原和固氮。就其活性,选择性以及在温和的温度,pH和压力条件下操作的能力而言,它们也是最熟练的催化剂之一。在没有这些酶的情况下,这些反应将进行得非常缓慢,即使有的话,也表明这些酶为我们今天所知道的生命的出现铺平了道路。在这篇综述中,分析了参与产生高反应性和不稳定物种(如氢氧根阴离子,氢化物,自由基和超氧化物分子)的多种金属酶的结构和催化机理。这样的反应中间体的形成在生物学条件下是非常困难的,并且仅合理选择特定的金属离子,使其与非常特殊的配体基团配合并浸入特定的蛋白质中,这些反应中间体才能进行。有趣的是,虽然化学性质不同,但可以使用不同的金属配位球产生相同的反应性和不稳定物质。提供了一系列精选的不同金属酶的实例来说明这种多样性,并讨论了不同金属离子参与相似反应(但涉及不同机理)的情况。

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