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GPX2 的开端及其 30 年后。

The beginning of GPX2 and 30 years later.

机构信息

Department of Cancer Genetics & Epigenetics, Beckman Research Institute of City of Hope. Duarte, California, USA, 91010.

Division of Cancer Treatment and Diagnosis, National Cancer Institute, NIH, Bethesda, MD, USA.

出版信息

Free Radic Biol Med. 2022 Aug 1;188:419-433. doi: 10.1016/j.freeradbiomed.2022.06.232. Epub 2022 Jul 5.

Abstract

We published the first paper to characterize GPX2 (aka GSHPx-GI) as a selenoenzyme with glutathione peroxidase activity in 1993. Among the four Se-GPX isozymes, GPX1-4, GPX1 and GPX2 are closely related in terms of structure, substrate specificities, and subcellular localization. What sets them apart are distinct patterns of gene regulation, tissue distribution and response to selenium. While we identified the digestive tract epithelium as the main site of GPX2 expression, later work has shown GPX2 is found more widely in epithelial tissues with concentration of expression in stem cell and proliferative compartments. GPX2 expression is regulated over a wide range of levels by many pathways, including NRF2, WNT, p53, RARE and this often results in attaching undue significance to GPX2 as GPX2 is only a part of a system of hydroperoxidase activities, including GPX1, peroxiredoxins and catalase. These other activities may play equal or greater roles, particularly in cell lines cultured without selenium supplementation and often with very low GPX2 levels. This could be assessed by examining levels of mRNA and protein among these various peroxidases at the outset of studies. As an example, it was found that GPX1 responds to the absence of GPX2 in mouse ileum and colon epithelium with higher expression. As such, both Gpx1 and Gpx2 had to be knocked out in mice to produce ileocolitis. However, we note that the actual role of GPX1 and GPX2 in relation to peroxiredoxin function is unclear. There may be an interdependence that requires only low amounts of GPX1 and/or GPX2 in a supporting role to maintain proper peroxiredoxin function. GPX2 levels may be prognostic for cancer progression in colon, breast, prostate and liver, however, there is no consistent trend for higher or lower levels to be favorable.

摘要

我们在 1993 年发表了第一篇论文,首次将 GPX2(又名 GSHPx-GI)描述为具有谷胱甘肽过氧化物酶活性的硒酶。在四种 Se-GPX 同工酶中,GPX1-4 中,GPX1 和 GPX2 在结构、底物特异性和亚细胞定位方面密切相关。使它们与众不同的是基因调控、组织分布和对硒的反应的独特模式。虽然我们确定消化道上皮是 GPX2 表达的主要部位,但后来的工作表明,GPX2 更广泛地存在于上皮组织中,在干细胞和增殖区室中表达浓度较高。GPX2 的表达受到许多途径的广泛调节,包括 NRF2、WNT、p53、RARE,这通常导致对 GPX2 的重视不当,因为 GPX2 只是过氧化物酶活性系统的一部分,包括 GPX1、过氧化物酶和过氧化氢酶。这些其他活性可能发挥同等或更大的作用,特别是在没有硒补充的细胞系中培养时,通常 GPX2 水平非常低。这可以通过在研究开始时检查这些各种过氧化物酶的 mRNA 和蛋白质水平来评估。例如,发现 GPX1 在缺乏 GPX2 的情况下在小鼠回肠和结肠上皮中表达更高。因此,只有在小鼠中敲除 Gpx1 和 Gpx2 才能产生回肠炎。然而,我们注意到 GPX1 和 GPX2 与过氧化物酶功能的实际关系尚不清楚。可能存在相互依存关系,只需要少量的 GPX1 和/或 GPX2 作为支持角色来维持适当的过氧化物酶功能。GPX2 水平可能与结肠癌、乳腺癌、前列腺癌和肝癌的癌症进展相关,但没有一致的趋势表明高水平或低水平更有利。

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