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谷胱甘肽和铁硫谷胱甘肽在铁代谢中的作用——综述。

Role of GSH and Iron-Sulfur Glutaredoxins in Iron Metabolism-Review.

机构信息

Institute for Medical Biochemistry and Molecular Biology, University Medicine, University of Greifswald, 17475 Greifswald, Germany.

Christopher Horst Lillig, Institute for Medical Biochemistry and Molecular Biology, University Medicine Greifswald, Ferdinand-Sauerbruch-Straße, 17475 Greifswald, Germany.

出版信息

Molecules. 2020 Aug 25;25(17):3860. doi: 10.3390/molecules25173860.

Abstract

Glutathione (GSH) was initially identified and characterized for its redox properties and later for its contributions to detoxification reactions. Over the past decade, however, the essential contributions of glutathione to cellular iron metabolism have come more and more into focus. GSH is indispensable in mitochondrial iron-sulfur (FeS) cluster biosynthesis, primarily by co-ligating FeS clusters as a cofactor of the CGFS-type (class II) glutaredoxins (Grxs). GSH is required for the export of the yet to be defined FeS precursor from the mitochondria to the cytosol. In the cytosol, it is an essential cofactor, again of the multi-domain CGFS-type Grxs, master players in cellular iron and FeS trafficking. In this review, we summarize the recent advances and progress in this field. The most urgent open questions are discussed, such as the role of GSH in the export of FeS precursors from mitochondria, the physiological roles of the CGFS-type Grx interactions with BolA-like proteins and the cluster transfer between Grxs and recipient proteins.

摘要

谷胱甘肽 (GSH) 最初因其氧化还原性质而被识别和描述,后来因其对解毒反应的贡献而被描述。然而,在过去的十年中,谷胱甘肽对细胞铁代谢的重要贡献越来越受到关注。GSH 对于线粒体铁硫 (FeS) 簇的生物合成是不可或缺的,主要是通过作为 CGFS 型(II 类)谷氧还蛋白 (Grx) 的辅助因子共同连接 FeS 簇。GSH 对于尚未定义的 FeS 前体从线粒体到细胞质的输出是必需的。在细胞质中,它是多结构域 CGFS 型 Grx 的必需辅助因子,是细胞铁和 FeS 运输的主要参与者。在这篇综述中,我们总结了该领域的最新进展和进展。讨论了最紧迫的未解决问题,例如 GSH 在 FeS 前体从线粒体输出中的作用、CGFS 型 Grx 与 BolA 样蛋白相互作用以及 Grx 与受体蛋白之间的簇转移的生理作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9a8/7503856/6d0cbcb743a1/molecules-25-03860-g001.jpg

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