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A Hybrid Mechanism for the Synechocystis Arsenate Reductase Revealed by Structural Snapshots during Arsenate Reduction

机译:砷还原过程中由结构快照揭示的集胞藻砷还原酶的混合机制。

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摘要

Evolution of enzymes plays a crucial role in obtaining new biological functions for all life forms. Arsenate reductases (ArsC) are several families of arsenic detoxification enzymes that reduce arsenate to arsenite, which can subsequently be extruded from cells by specific transporters. Among these, the Synechocystis ArsC (SynArsC) is structurally homologous to the well characterized thioredoxin (Trx)-coupled ArsC family but requires the glutaredoxin (Grx) system for its reactivation, therefore classified as a unique Trx/Grx-hybrid family. The detailed catalytic mechanism of SynArsC is unclear and how the “hybrid” mechanism evolved remains enigmatic. Herein, we report the molecular mechanism of SynArsC by biochemical and structural studies. Our work demonstrates that arsenate reduction is carried out via an intramolecular thiol-disulfide cascade similar to the Trx-coupled family, whereas the enzyme reactivation step is diverted to the coupling of the glutathione-Grx pathway due to the local structural difference. The current results support the hypothesis that SynArsC is likely a molecular fossil representing an intermediate stage during the evolution of the Trx-coupled ArsC family from the low molecular weight protein phosphotyrosine phosphatase (LMW-PTPase) family.
机译:酶的进化在获得所有生命形式的新生物学功能中起着至关重要的作用。砷酸还原酶(ArsC)是几种砷解毒酶家族,它们将砷酸盐还原为亚砷酸盐,随后可以通过特定的转运蛋白从细胞中挤出。其中,集胞囊藻ArsC(SynArsC)在结构上与特征明确的硫氧还蛋白(Trx)偶联的ArsC家族同源,但需要谷胱甘肽(Grx)系统进行重新激活,因此被归类为独特的Trx / Grx杂交家族。 SynArsC的详细催化机制尚不清楚,“混合”机制如何演变仍然是个谜。在本文中,我们通过生化和结构研究报告了SynArsC的分子机制。我们的工作表明,砷酸盐的还原是通过类似于Trx偶联家族的分子内硫醇-二硫键级联进行的,而酶的活化步骤由于局部结构差异而转向了谷胱甘肽-Grx途径的偶联。目前的结果支持以下假设:SynArsC可能是代表从低分子量蛋白磷酸酪氨酸磷酸酶(LMW-PTPase)家族进化到Trx偶联ArsC家族的中间阶段的分子化石。

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