Department of Animal and Dairy Sciences, Mississippi State University, Mississippi State, MS, 39762, USA.
Department of Biochemistry, Molecular Biology, Entomology and Plant Pathology, Mississippi State University, Mississippi State, MS, 39762, USA.
BMC Genomics. 2018 Jan 18;19(1):62. doi: 10.1186/s12864-018-4442-2.
Mature spermatozoa contain numerous epididymal and seminal plasma proteins, which full identification through high-throughput technologies may allow for a better understanding of the sperm biology. Therefore, we conducted a global proteomic analysis of boar spermatozoa through shotgun and gel-based methodologies.
The total proteins were extracted from mature spermatozoa and subjecsted to proteome analyses. Functional analyses of gene ontology representations and pathway enrichments were conducted on the shotgun dataset, followed by immunology and gene expression validations. Shotgun and gel-based approaches allowed the detection of 2728 proteins and 2123 spots, respectively. Approximately 38% and 59% of total proteins were respectively fully and partially annotated, and 3% were unknown. Gene ontology analysis indicated high proportions of proteins associated with intracellular and cytoplasm localizations, protein and nucleic acid binding, hydrolase and transferase activities, and cellular, metabolic, and regulation of biological processes. Proteins associated with phosphorylation processes and mitochondrial membranes, nucleic acid binding, and phosphate and phosphorous metabolics represented 77% of the dataset. Pathways associated with oxidative phosphorylation, citrate cycle, and extra-cellular matrix-receptor interaction were significantly enriched. Protein complex, intracellular organelle, cytoskeletal parts, fertilization and reproduction, and gap junction pathway were significantly enriched within the top 116 highly abundant proteins. Nine randomly selected protein candidates were confirmed with gel-based identification, immunofluorescence detection, and mRNA expression.
This study offers an in-depth proteomic mapping of mature boar spermatozoa that will enable comparative and discovery research for the improvement of male fertility.
成熟精子中含有许多附睾和精浆蛋白,通过高通量技术对其进行全面鉴定,可能有助于更好地了解精子生物学。因此,我们通过鸟枪法和凝胶基方法对猪精子进行了全面的蛋白质组学分析。
从成熟精子中提取总蛋白,并进行蛋白质组分析。对鸟枪法数据集进行基因本体论(GO)代表和途径富集的功能分析,随后进行免疫学和基因表达验证。鸟枪法和凝胶基方法分别检测到 2728 种蛋白质和 2123 个斑点。大约 38%和 59%的总蛋白分别得到了完全和部分注释,3%的蛋白未知。GO 分析表明,与细胞内和细胞质定位、蛋白质和核酸结合、水解酶和转移酶活性以及细胞、代谢和生物过程调节相关的蛋白质比例较高。与磷酸化过程和线粒体膜、核酸结合以及磷酸盐和磷代谢相关的蛋白质占数据集的 77%。与氧化磷酸化、柠檬酸循环和细胞外基质-受体相互作用相关的途径显著富集。在排名前 116 的高丰度蛋白质中,蛋白质复合物、细胞内细胞器、细胞骨架部分、受精和繁殖以及间隙连接途径显著富集。随机选择的 9 种候选蛋白通过凝胶鉴定、免疫荧光检测和 mRNA 表达得到了验证。
本研究提供了成熟公猪精子的深入蛋白质组图谱,这将为提高雄性生育力的比较和发现研究提供帮助。