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乙二醛酶系统——对古老代谢的新见解

The Glyoxalase System-New Insights into an Ancient Metabolism.

作者信息

Morgenstern Jakob, Campos Campos Marta, Nawroth Peter, Fleming Thomas

机构信息

Department of Internal Medicine I and Clinical Chemistry, University Hospital Heidelberg, 69120 Heidelberg, Germany.

German Center for Diabetes Research (DZD), 85764 Neuherberg, Germany.

出版信息

Antioxidants (Basel). 2020 Oct 1;9(10):939. doi: 10.3390/antiox9100939.

Abstract

The glyoxalase system was discovered over a hundred years ago and since then it has been claimed to provide the role of an indispensable enzyme system in order to protect cells from a toxic byproduct of glycolysis. This review gives a broad overview of what has been postulated in the last 30 years of glyoxalase research, but within this context it also challenges the concept that the glyoxalase system is an exclusive tool of detoxification and that its substrate, methylglyoxal, is solely a detrimental burden for every living cell due to its toxicity. An overview of consequences of a complete loss of the glyoxalase system in various model organisms is presented with an emphasis on the role of alternative detoxification pathways of methylglyoxal. Furthermore, this review focuses on the overlooked posttranslational modification of Glyoxalase 1 and its possible implications for cellular maintenance under various (patho-)physiological conditions. As a final note, an intriguing point of view for the substrate methylglyoxal is offered, the concept of methylglyoxal (MG)-mediated hormesis.

摘要

乙二醛酶系统是在一百多年前被发现的,从那时起,人们就声称它在保护细胞免受糖酵解有毒副产物的影响方面发挥着不可或缺的酶系统的作用。这篇综述广泛概述了过去30年乙二醛酶研究中所提出的观点,但在此背景下,它也对乙二醛酶系统是唯一的解毒工具以及其底物甲基乙二醛因其毒性而仅仅是每个活细胞的有害负担这一概念提出了挑战。本文介绍了各种模式生物中乙二醛酶系统完全缺失的后果,并重点强调了甲基乙二醛的替代解毒途径的作用。此外,这篇综述关注了被忽视的乙二醛酶1的翻译后修饰及其在各种(病理)生理条件下对细胞维持的可能影响。最后,本文提出了一个关于底物甲基乙二醛的有趣观点,即甲基乙二醛(MG)介导的兴奋效应的概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5983/7600140/9dc5955dbe50/antioxidants-09-00939-g001.jpg

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