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An integrated overview on the regulation of sperm metabolism (glycolysis-Krebs cycle-oxidative phosphorylation)

氧化磷酸化 糖酵解 活性氧 新陈代谢 精子 细胞生物学 线粒体 化学 生物化学 代谢途径 柠檬酸循环 蛋白质组学 生物 遗传学 基因
作者
Fernando J. Peña,José M. Ortiz-Rodríguez,Gemma Gaitskell‐Phillips,M.C. Gil,Cristina Ortega‐Ferrusola,Francisco E. Martín‐Cano
出处
期刊:Animal Reproduction Science [Elsevier BV]
卷期号:246: 106805-106805 被引量:74
标识
DOI:10.1016/j.anireprosci.2021.106805
摘要

An overview of the sperm metabolism is presented; using the stallion as a model we review glycolysis, Krebs Cycle and oxidative phosphorylation, paying special attention to the interactions among them. In addition, metabolism implies a series of coordinated oxidation-reduction reactions and in the course of these reactions reactive oxygen species (ROS) and reactive oxoaldehydes are produced ; the electron transport chain (ETC) in the mitochondria is the main source of the anion superoxide and hydrogen peroxide, while glycolysis produces 2-oxoaldehydes such as methylglyoxal as byproducts; due to the adjacent carbonyl groups are strong electrophiles (steal electrons oxidizing other compounds). Sophisticated mechanisms exist to maintain redox homeostasis, because ROS under controlled production also have important regulatory functions in the spermatozoa. The interactions between metabolism and production of reactive oxygen species are essential for proper sperm function, and deregulation of these processes rapidly leads to sperm malfunction and finally death. Lastly, we briefly describe two techniques that will expand our knowledge on sperm metabolism in the coming decades, metabolic flow cytometry and the use of the "omics" technologies, proteomics and metabolomics, specifically the micro and nano proteomics/metabolomics. A better understanding of the metabolism of the spermatozoa will lead to big improvements in sperm technologies and the diagnosis and treatment of male factor infertility.
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