Sperm gain fertilization competence in the female reproductive tract through a series of biochemical changes and a requisite switch from linear progressive to hyperactive motility. Despite being essential for fertilization, regulation of sperm energy transduction is poorly understood. This knowledge gap confounds interpretation of interspecies variation and limits progress in optimizing sperm selection for assisted reproduction. Here, we developed a model of mouse sperm bioenergetics using metabolic phenotyping data, quantitative microscopy, and spectral flow cytometry. The results define a mechanism of motility regulation by microenvironmental pyruvate. Rather than being consumed as a mitochondrial fuel source, pyruvate stimulates hyperactivation by repressing lactate oxidation and activating glycolysis in the flagellum through provision of nicotinamide adenine dinucleotide (NAD)(+). These findings provide evidence that the transitions in motility requisite for sperm competence are governed by changes in the metabolic microenvironment, highlighting the unexplored potential of using catabolite combination to optimize sperm selection for fertilization.
Pyruvate modulation of redox potential controls mouse sperm motility.
丙酮酸对氧化还原电位的调节控制着小鼠精子的运动能力
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作者:Schmidt Cameron A, Hale Benjamin J, Bhowmick Debajit, Miller William J, Neufer P Darrell, Geyer Christopher B
| 期刊: | Developmental Cell | 影响因子: | 8.700 |
| 时间: | 2024 | 起止号: | 2024 Jan 8; 59(1):79-90 |
| doi: | 10.1016/j.devcel.2023.11.011 | 种属: | Mouse |
| 研究方向: | 其它 | ||
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