Laboratory of Equine Reproduction and Equine Spermatology, Veterinary Teaching Hospital, University of Extremadura, Cáceres, Spain.
Facility of Innovation and Analysis in Animal Source Foodstuffs, University of Extremadura, Cáceres, Spain.
Theriogenology. 2022 Jan 1;177:94-102. doi: 10.1016/j.theriogenology.2021.10.010. Epub 2021 Oct 14.
Seminal plasma plays an important role in sperm physiology. Seminal plasma proteins vehiculated in microvesicles, carry RNAs and proteins with a potential role in early embryo development. Additionally, proteins present in seminal plasma participate in redox regulation and energy metabolism. In view of these facts, we hypothesized that differences in protein composition of the seminal plasma among stallions may help to explain differences in freeze-ability seen among them. Three independent ejaculates from 10 different stallions of varying breeds were frozen using standard protocols in our laboratory. Aliquots of the ejaculate were separated and stored at -80 °C until further proteomic analysis. Semen analysis was performed using computer assisted sperm analysis and flow cytometry. Significant differences in proteome composition of seminal plasma were observed in the group of stallions showing better motility post thaw. 3116 proteins were identified, and of these, 34 were differentially expressed in stallions with better motility post thaw, 4 of them were also differentially expressed in stallions with different percentages of linearly motile sperm post thaw and 1 protein, Midasin, was expressed in stallions showing high circular velocity post thaw. Seminal plasma proteins may play a major role in sperm functionality; being vehiculated through extracellular vesicles and participating in sperm physiology. Bioinformatic analysis identifies discriminant proteins able to predict the outcome of cryopreservation, identifying potential new biomarkers to assess ejaculate quality.
精浆在精子生理学中起着重要作用。微泡中运载的精浆蛋白携带 RNA 和蛋白质,它们在早期胚胎发育中具有潜在作用。此外,精浆中的蛋白质参与氧化还原调节和能量代谢。鉴于这些事实,我们假设种马精浆中蛋白质组成的差异可能有助于解释它们之间冷冻能力的差异。我们实验室使用标准方案对 10 匹不同品种的种马的 3 个独立精液进行冷冻。将精液等分试样分离并储存在-80°C 直到进一步进行蛋白质组学分析。使用计算机辅助精子分析和流式细胞术进行精液分析。在解冻后运动性更好的种马组中,观察到精浆蛋白质组组成存在显著差异。鉴定出 3116 种蛋白质,其中 34 种在解冻后运动性更好的种马中表达差异,4 种在解冻后具有不同线性运动精子百分比的种马中表达差异,1 种蛋白质 Midasin 在解冻后具有高圆形速度的种马中表达。精浆蛋白可能在精子功能中起主要作用; 通过细胞外囊泡运输并参与精子生理学。生物信息学分析确定了能够预测冷冻保存结果的判别蛋白,为评估精液质量提供了潜在的新生物标志物。