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种马精子:一种有价值的模型,有助于理解代谢与精子细胞中氧化还原(失调)调节之间的相互作用。

The Stallion Spermatozoa: A Valuable Model to Help Understand the Interplay Between Metabolism and Redox (De)regulation in Sperm Cells.

机构信息

Laboratory of Equine Reproduction and Equine Spermatology, Veterinary Teaching Hospital, University of Extremadura, Cáceres, Spain.

Urology Division, Department of Surgery, Faculty of Medicine, McGill University, Montréal, Quebec, Canada.

出版信息

Antioxid Redox Signal. 2022 Sep;37(7-9):521-537. doi: 10.1089/ars.2021.0092. Epub 2022 Apr 11.

DOI:10.1089/ars.2021.0092
PMID:35180830
Abstract

Proper functionality of the spermatozoa depends on the tight regulation of their redox status; at the same time these cells are highly energy demanding and in the energetic metabolism, principally in the electron transport chain in the mitochondria, reactive oxygen species are continuously produced, in addition to that observed in the Krebs cycle and during the β-oxidation of fatty acids. In addition, in glycolysis, elimination of phosphate groups from glyceraldehyde 3-phosphate and dihydroxyacetone phosphate results in the byproducts glyoxal (G) and methylglyoxal (MG); these products are 2-oxoaldehydes. The presence of adjacent carbonyl groups makes them strong electrophiles that react with nucleophiles in proteins, lipids, and DNA, forming advanced glycation end products. This mechanism is behind subfertility in diabetic patients; in the animal breeding industry, commercial extenders for stallion semen contain a supraphysiological concentration of glucose that promotes MG production, constituting a potential model of interest. Increasing our knowledge of sperm metabolism and its interactions with redox regulation may improve current sperm technologies in use, and shall provide new clues to understanding infertility in males. Moreover, stallion spermatozoa due to its accessibility, intense metabolism, and suitability for proteomics/metabolomic studies may constitute a suitable model for studying regulation of metabolism and interactions between metabolism and redox homeostasis. 37, 521-537.

摘要

精子的正常功能取决于其氧化还原状态的严格调节;与此同时,这些细胞对能量的需求很高,在能量代谢中,主要是在线粒体的电子传递链中,不断产生活性氧物种,除了在三羧酸循环和脂肪酸的β-氧化中观察到的活性氧物种。此外,在糖酵解中,从甘油醛 3-磷酸和二羟丙酮磷酸中去除磷酸盐基团会产生副产物乙二醛 (G) 和甲基乙二醛 (MG);这些产物是 2-氧代醛。相邻羰基的存在使它们成为强亲电试剂,与蛋白质、脂质和 DNA 中的亲核试剂反应,形成晚期糖基化终产物。这种机制是糖尿病患者生育能力下降的原因;在动物繁殖行业中,种马精液的商业稀释液含有超生理浓度的葡萄糖,可促进 MG 的产生,构成了一个潜在的有趣模型。增加我们对精子代谢及其与氧化还原调节相互作用的了解,可以改进当前使用的精子技术,并为理解男性不育提供新的线索。此外,由于其可及性、强烈的代谢以及适合蛋白质组学/代谢组学研究,种马精子可能构成研究代谢调节以及代谢与氧化还原平衡之间相互作用的合适模型。37, 521-537。

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