Westfalewicz B, Dietrich M A, Mostek A, Partyka A, Bielas W, Niżański W, Ciereszko A
Department of Gamete and Embryo Biology, Institute of Animal Reproduction and Food Research, Polish Academy of Sciences, Tuwima 10, 10-748 Olsztyn, Poland.
Department of Gamete and Embryo Biology, Institute of Animal Reproduction and Food Research, Polish Academy of Sciences, Tuwima 10, 10-748 Olsztyn, Poland.
J Dairy Sci. 2017 Mar;100(3):2282-2298. doi: 10.3168/jds.2016-11866. Epub 2016 Dec 29.
The existing knowledge on the bull seminal vesicle proteome, a major seminal plasma constituent, and its relationship with seminal plasma is limited. This knowledge is prerequisite for a better understanding of seminal plasma variability, which is linked to semen quality. The objective of this study was to characterize the proteomes of seminal vesicle fluid and seminal plasma and to compare them to better understand the origin of seminal plasma proteins. We collected ejaculates and seminal vesicle fluid postmortem from 6 mature Holstein Friesian bulls. We performed the analysis and identification of proteins using 2-dimensional electrophoresis coupled with matrix-assisted laser desorption/ionization mass spectrometry. We identified 105 proteins in bull seminal vesicle fluid and 88 proteins in seminal plasma. For both seminal vesicles and seminal plasma proteins described in our study, top biological functions were cellular movement, cell death and survival, and cellular growth and proliferation. Additionally, seminal vesicle fluid proteins were involved in protein degradation and synthesis. Seminal plasma proteins were also involved in cellular assembly and organization and cell-to-cell signaling and interactions. Proteins of both fluids were involved in the following canonical pathways: glycolysis, gluconeogenesis, liver X receptor/farnesoid X receptor, and farnesoid X receptor/retinoid X receptor activation. Additionally, seminal vesicle fluid proteins appeared to be involved in oxidative stress response mediated by nuclear factor E2-related factor 2. Our results described the bull seminal vesicle fluid proteome for the first time and allowed for significant expansion of the current knowledge on the bull seminal plasma proteome. Moreover, analysis indicated that both bull seminal vesicle fluid and seminal plasma proteomes contained interconnected protein groups related to protective functions, glycolysis, and the morphology and physiology of the spermatozoa. These proteins and their interactions could be targeted in future research.
作为精液主要成分的公牛精囊蛋白质组及其与精浆的关系,目前的相关知识有限。而这些知识对于更好地理解与精液质量相关的精浆变异性而言是必不可少的前提条件。本研究的目的是对精囊液和精浆的蛋白质组进行表征,并对它们进行比较,以更好地了解精浆蛋白质的来源。我们从6头成熟的荷斯坦弗里生公牛死后收集了射精样本和精囊液。我们使用二维电泳结合基质辅助激光解吸/电离质谱对蛋白质进行了分析和鉴定。我们在公牛精囊液中鉴定出105种蛋白质,在精浆中鉴定出88种蛋白质。对于我们研究中描述的精囊和精浆蛋白质,主要生物学功能包括细胞运动、细胞死亡与存活以及细胞生长与增殖。此外,精囊液蛋白质还参与蛋白质降解和合成。精浆蛋白质还参与细胞组装与组织以及细胞间信号传导与相互作用。两种液体中的蛋白质都参与以下经典途径:糖酵解、糖异生、肝脏X受体/法尼醇X受体以及法尼醇X受体/视黄酸X受体激活。此外,精囊液蛋白质似乎参与由核因子E2相关因子2介导的氧化应激反应。我们的研究结果首次描述了公牛精囊液蛋白质组,并极大地扩展了目前关于公牛精浆蛋白质组的知识。此外,分析表明,公牛精囊液和精浆蛋白质组都包含与保护功能、糖酵解以及精子形态和生理相关的相互关联的蛋白质组。这些蛋白质及其相互作用可能成为未来研究的目标。