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人源 DCXR-另一种参与糖代谢、羰基解毒、细胞黏附和男性生育力的“兼职蛋白”?

Human DCXR - another 'moonlighting protein' involved in sugar metabolism, carbonyl detoxification, cell adhesion and male fertility?

机构信息

Institute of Toxicology and Pharmacology for Natural Scientists, University Medical School Schleswig-Holstein, Brunswiker Str. 10, 24105, Kiel, Germany.

出版信息

Biol Rev Camb Philos Soc. 2015 Feb;90(1):254-78. doi: 10.1111/brv.12108. Epub 2014 Apr 10.

Abstract

Dicarbonyl/L-xylulose reductase (DCXR; SDR20C1), a member of the short-chain dehydrogenase/reductase (SDR) superfamily catalyzes the reduction of α-dicarbonyl compounds and monosaccharides. Its role in the metabolism of L-xylulose has been known since 1970, when essential pentosuria was found to be associated with DCXR deficiency. Despite its early discovery, our knowledge about the role of human DCXR in normal physiology and pathophysiology is still incomplete. Sporadic studies have demonstrated aberrant expression in several cancers, but their physiological significance is unknown. In reproductive medicine, where DCXR is commonly referred to as 'sperm surface protein P34H', it serves as marker for epididymal sperm maturation and is essential for gamete interaction and successful fertilization. DCXR exhibits a multifunctional nature, both acting as a carbonyl reductase and also performing non-catalytic functions, possibly resulting from interactions with other proteins. Recent observations associate DCXR with a role in cell adhesion, pointing to a novel function involving tumour progression and possibly metastasis. This review summarizes the current knowledge about human DCXR and its orthologs from mouse and Caenorhabditis elegans (DHS-21) with an emphasis on its multifunctional characteristics. Due to its close structural relationship with DCXR, carbonyl reductase 2 (Cbr2), a tetrameric enzyme found in several non-primate species is also discussed. Similar to human DCXR, Cbr2 from golden hamster (P26h) and cow (P25b) is essential for sperm-zona pellucida interaction and fertilization. Because of the apparent similarity of these two proteins and the inconsistent use of alternative names previously, we provide an overview of the systematic classification of DCXR and Cbr2 and a phylogenetic analysis to illustrate their ancestry.

摘要

二羰基/L-木酮糖还原酶(DCXR;SDR20C1),是短链脱氢酶/还原酶(SDR)超家族的成员,可催化α-二羰基化合物和单糖的还原。自 1970 年发现必需性戊糖尿症与 DCXR 缺乏有关以来,人们就已经知道它在 L-木酮糖代谢中的作用。尽管它很早就被发现了,但我们对人类 DCXR 在正常生理和病理生理中的作用的了解仍然不完整。零星的研究表明,它在几种癌症中表达异常,但它们的生理意义尚不清楚。在生殖医学中,DCXR 通常被称为“精子表面蛋白 P34H”,它是附睾精子成熟的标志物,对于配子相互作用和成功受精是必不可少的。DCXR 具有多功能性质,既能作为羰基还原酶,也能发挥非催化功能,这可能是由于与其他蛋白质的相互作用。最近的观察结果将 DCXR 与细胞黏附的作用联系起来,表明它涉及肿瘤进展和可能的转移的新功能。本综述总结了目前关于人类 DCXR 及其在小鼠和秀丽隐杆线虫(DHS-21)中的同源物的知识,重点介绍了其多功能特性。由于它与 DCXR 结构密切相关,因此还讨论了在几种非灵长类动物中发现的四聚体酶羰基还原酶 2(Cbr2)。与人类 DCXR 相似,来自金黄地鼠(P26h)和牛(P25b)的 Cbr2 对于精子-透明带相互作用和受精是必不可少的。由于这两种蛋白质明显相似,并且之前曾使用过不同的名称,因此我们提供了 DCXR 和 Cbr2 的系统分类概述和系统发育分析,以说明它们的亲缘关系。

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