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Discovery of superoxide reductase: an historical perspective

机译:超氧化物还原酶的发现:历史的观点

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For more than 30 years, the only enzymatic system known to catalyze the elimination of superoxide was superoxide dismutase, SOD. SOD has been found in almost all organisms living in the presence of oxygen, including some anaerobic bacteria, supporting the notion that superoxide is a key and general component of oxidative stress. Recently, a new concept in the field of the mechanisms of cellular defense against superoxide has emerged. It was discovered that elimination of superoxide in some anaerobic and microaerophilic bacteria could occur by reduction, a reaction catalyzed by a small metalloenzyme thus named superoxide reductase, SOR. Having played a major role in this discovery, we describe here how the concept of superoxide reduction emerged and how it was experimentally substantiated independently in our laboratory.
机译:30多年来,已知唯一能催化消除超氧化物的酶系统是超氧化物歧化酶SOD。在几乎所有存在氧气的生物中都发现了SOD,包括一些厌氧细菌,这支持了超氧化物是氧化应激的关键和一般组成部分的观点。最近,在细胞对超氧化物的防御机制中出现了新概念。已经发现,某些厌氧和微需氧细菌中的超氧化物可以通过还原而消除,还原是由一种小的金属酶催化的反应,因此称为超氧化物还原酶SOR。在这一发现中发挥了重要作用之后,我们在这里描述超氧化物还原的概念是如何出现的,以及如何在我们的实验室中通过实验独立地证实。

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