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首页> 外文期刊>Antioxidants and redox signalling >Protein disulfide isomerase: a critical evaluation of its function in disulfide bond formation.
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Protein disulfide isomerase: a critical evaluation of its function in disulfide bond formation.

机译:蛋白质二硫键异构酶:对其在二硫键形成中功能的关键评估。

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摘要

Disulfide bond formation is probably involved in the biogenesis of approximately one third of human proteins. A central player in this essential process is protein disulfide isomerase or PDI. PDI was the first protein-folding catalyst reported. However, despite more than four decades of study, we still do not understand much about its physiological mechanisms of action. This review examines the published literature with a critical eye. This review aims to (a) provide background on the chemistry of disulfide bond formation and rearrangement, including the concept of reduction potential, before examining the structure of PDI; (b) detail the thiol-disulfide exchange reactions that are catalyzed by PDI in vitro, including a critical examination of the assays used to determine them; (c) examine oxidation and reduction of PDI in vivo, including not only the role of ERo1 but also an extensive assessment of the role of glutathione, as well as other systems, such as peroxide, dehydroascorbate, and a discussion of vitamin K-based systems; (d) consider the in vivo reactions of PDI and the determination and implications of the redox state of PDI in vivo; and (e) discuss other human and yeast PDI-family members.
机译:二硫键的形成可能与约三分之一人类蛋白质的生物发生有关。在这一重要过程中的主要角色是蛋白质二硫键异构酶或PDI。 PDI是第一个报道的蛋白质折叠催化剂。但是,尽管进行了四十多年的研究,但我们对其生理作用机制仍知之甚少。这篇评论以批判的眼光审视了已出版的文献。这篇综述的目的是:(a)在检查PDI的结构之前,提供有关二硫键形成和重排的化学背景,包括还原电位的概念; (b)详细介绍了由PDI体外催化的硫醇-二硫键交换反应,包括对用于确定它们的检测方法的严格检查; (c)检查体内PDI的氧化和还原,不仅包括ERo1的作用,还包括对谷胱甘肽以及其他系统(例如过氧化物,脱氢抗坏血酸)的作用的广泛评估,以及对基于维生素K的讨论系统; (d)考虑PDI的体内反应以及PDI体内氧化还原状态的确定和影响; (e)讨论其他人类和酵母PDI家族成员。

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