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谷胱甘肽S-转移酶在哺乳动物精子的线粒体功能、质膜稳定性和氧化调节中起关键作用。

Glutathione S-Transferases Play a Crucial Role in Mitochondrial Function, Plasma Membrane Stability and Oxidative Regulation of Mammalian Sperm.

作者信息

Llavanera Marc, Delgado-Bermúdez Ariadna, Olives Samuel, Mateo-Otero Yentel, Recuero Sandra, Bonet Sergi, Fernández-Fuertes Beatriz, Yeste Marc, Barranco Isabel

机构信息

Biotechnology of Animal and Human Reproduction (TechnoSperm), Institute of Food and Agricultural Technology, University of Girona, E-17003 Girona, Spain.

Unit of Cell Biology, Department of Biology, Faculty of Sciences, University of Girona, E-17003 Girona, Spain.

出版信息

Antioxidants (Basel). 2020 Jan 24;9(2):100. doi: 10.3390/antiox9020100.

Abstract

Glutathione S-transferases (GSTs) are essential sperm antioxidant enzymes involved in cell protection against oxidative stress and toxic chemicals, preserving sperm function and fertilising ability. Artificial insemination (AI) in pigs is commonly carried out through the use of liquid-stored semen at 17 °C, which not only reduces sperm metabolic activity but also sperm quality and AI-farrowing rates within the 72 h of storage. While one may reasonably suggest that such enzymes are implicated in the physiology and maintenance of mammalian sperm function during liquid-storage, no previous studies conducted on any species have addressed this hypothesis. Therefore, the objective of the present work was to characterise the presence and function of sperm GSTs in mammalian sperm, using the pig as a model. In this regard, inhibition of such enzymes by ethacrynic acid (EA) during semen storage at 17 °C was performed to evaluate the effects of GSTs in liquid-preserved boar sperm by flow cytometry, immunofluorescence, and immunoblotting analysis. The results of this study have shown, for the first time in mammalian species, that the inhibition of GSTs reduces sperm quality and functionality parameters during their storage at 17 °C. These findings highlight the key role of such enzymes, especially preserving mitochondrial function and maintaining plasma membrane stability. In addition, this study has identified and localised GSTM3 in the tail and equatorial subdomain of the head of boar sperm. Finally, this study has set grounds for future investigations testing supplementation of semen extenders with GSTs, as this may improve fertility outcomes of swine AIs.

摘要

谷胱甘肽S-转移酶(GSTs)是精子中至关重要的抗氧化酶,参与细胞对氧化应激和有毒化学物质的防护,维持精子功能和受精能力。猪的人工授精(AI)通常通过使用在17°C下液态保存的精液来进行,这不仅会降低精子的代谢活性,还会在保存的72小时内降低精子质量和人工授精产仔率。虽然有人可能合理推测这些酶在精液液态保存期间对哺乳动物精子功能的生理调节和维持中起作用,但此前尚未有针对任何物种的研究探讨过这一假设。因此,本研究的目的是以猪为模型,表征哺乳动物精子中GSTs的存在和功能。在这方面,通过在17°C精液保存期间用依他尼酸(EA)抑制这些酶,利用流式细胞术、免疫荧光和免疫印迹分析来评估GSTs对液态保存的公猪精子的影响。本研究结果首次在哺乳动物物种中表明,抑制GSTs会降低精子在17°C保存期间的质量和功能参数。这些发现突出了此类酶的关键作用,尤其是在维持线粒体功能和保持质膜稳定性方面。此外,本研究已在公猪精子的尾部和头部赤道亚区域鉴定并定位了GSTM3。最后,本研究为未来关于在精液稀释剂中添加GSTs的研究奠定了基础,因为这可能会提高猪人工授精的生育结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9687/7070295/6bb1b7f8329c/antioxidants-09-00100-g001.jpg

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