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Selenium versus sulfur: Reversibility of chemical reactions and resistance to permanent oxidation in proteins and nucleic acids

机译:硒与硫:化学反应的可逆性和蛋白质和核酸中永久氧化的抗性

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This review highlights the contributions of Jean Chaudiere to the field of selenium biochemistry. Chaudiere was the first to recognize that one of the main reasons that selenium in the form of selenocysteine is used in proteins is due to the fact that it strongly resists permanent oxidation. The foundations for this important concept was laid down by Al Tappel in the 1960's and even before by others. The concept of oxygen tolerance first recognized in the study of glutathione peroxidase was further advanced and refined by those studying [NiFeSe]-hydrogenases, selenosubtilisin, and thioredoxin reductase. After 200 years of selenium research, work by Marcus Conrad and coworkers studying glutathione peroxidase-4 has provided definitive evidence for Chaudiere's original hypothesis (Ingold et al., 2018) [36]. While the reaction of selenium with oxygen is readily reversible, there are many other examples of this phenomenon of reversibility. Many reactions of selenium can be described as "easy in - easy out". This is due to the strong nucleophilic character of selenium to attack electrophiles, but then this reaction can be reversed due to the strong electrophilic character of selenium and the weakness of the selenium-carbon bond. Several examples of this are described.
机译:本综述强调了让Chaudiere对硒生物化学领域的贡献。 Chaudiere是第一个认识到硒中硒在蛋白质中使用的主要原因之一是蛋白质的主要原因是由于它强烈抵抗永久氧化。这个重要概念的基础是在1960年代甚至以前的其他人的al tappel下装。在研究谷胱甘肽过氧化物酶的研究中首次公认的氧耐受概念进一步提出并通过研究[尼法利亚] - 氢酶,硒培硝杆菌和硫氧化氢化酶还原酶精制。经过200年的硒研究,Marcus Conrad的工作和研究谷胱甘肽过氧化物酶-4的同事为Chaudiere的原始假设提供了明确的证据(Ingold等,2018)[36]。虽然硒与氧气的反应很容易可逆,但是这种可逆性现象的许多其他示例。许多硒反应可以被描述为“轻松 - 易于淘汰”。这是由于硒的强亲核特征攻击电子手机,但是由于硒的强型电泳特征和硒 - 碳键的弱性,该反应可以逆转。描述了几个例子。

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