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首页> 外文期刊>Antioxidants and redox signalling >Structure-based insights into the catalytic power and conformational dexterity of peroxiredoxins.
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Structure-based insights into the catalytic power and conformational dexterity of peroxiredoxins.

机译:基于结构的见解,了解过氧化物酶的催化能力和构象灵巧性。

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摘要

Peroxiredoxins (Prxs), some of nature's dominant peroxidases, use a conserved Cys residue to reduce peroxides. They are highly expressed in organisms from all kingdoms, and in eukaryotes they participate in hydrogen peroxide signaling. Seventy-two Prx structures have been determined that cover much of the diversity of the family. We review here the current knowledge and show that Prxs can be effectively classified by a structural/evolutionary organization into six subfamilies followed by specification of a 1-Cys or 2-Cys mechanism, and for 2-Cys Prxs, the structural location of the resolving Cys. We visualize the varied catalytic structural transitions and highlight how they differ depending on the location of the resolving Cys. We also review new insights into the question of how Prxs are such effective catalysts: the enzyme activates not only the conserved Cys thiolate but also the peroxide substrate. Moreover, the hydrogen-bonding network created by the four residues conserved in all Prx active sites stabilizes the transition state of the peroxidatic S(N)2 displacement reaction. Strict conservation of the peroxidatic active site along with the variation in structural transitions provides a fascinating picture of how the diverse Prxs function to break down peroxide substrates rapidly.
机译:过氧化物酶(Prxs)是自然界中的主要过氧化物酶,它使用保守的Cys残基来减少过氧化物。它们在来自所有王国的生物中高度表达,并且在真核生物中它们参与过氧化氢信号传导。已确定涵盖家庭多样性的72个Prx结构。我们在这里回顾当前的知识,并显示结构/进化组织可以有效地将Prxs分为六个亚家族,然后指定1-Cys或2-Cys机制,而对于2-Cys Prxs,则可以确定解析的结构位置半胱氨酸我们将各种催化结构转变可视化,并突出显示它们如何根据解析Cys的位置而不同。我们还回顾了有关Prxs是如何有效催化剂的问题的新见解:该酶不仅激活了保守的Cys硫醇盐,还激活了过氧化物底物。此外,由所有Prx活性位点中保守的四个残基形成的氢键网络稳定了过氧化物S(N)2置换反应的过渡态。过氧化物活性位点的严格保守以及结构转变的变化为各种Prxs如何快速分解过氧化物底物提供了迷人的印象。

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