Laboratório de Biotecnologia, Universidade do Vale do Taquari - Univates, Rua Avelino Tallini, 171, Lajeado, RS, 95914-014, Brazil.
Faculdade de Farmácia, Universidade Federal do Rio Grande do Sul, Av. Ipiranga, 2752, Porto Alegre, RS, 90610-000, Brazil.
Cell Tissue Res. 2020 Feb;379(2):389-405. doi: 10.1007/s00441-019-03080-0. Epub 2019 Aug 23.
In the present study, we describe the proteome of porcine cauda epididymis fluid and spermatozoa by means of Multidimensional Protein Identification Technology (MudPIT). Ten sexually mature healthy boars were surgically castrated and epididymides were dissected to obtain the cauda epididymal content. Polled protein extracts of cauda epididymal fluid (CEF) and spermatozoa (CESperm) were loaded in an Agilent 1100 quaternary HPLC and peptides eluted from the microcapillary column were electro-sprayed directly into a LTQ Orbitrap XL mass spectrometer. Using bioinformatics, identified proteins were classified by their molecular functions, involvement in biological processes and participation in relevant metabolic pathways associated with spermatozoa physiology, fertility potential and protection. A total of 645 proteins were identified in the CEF, with epididymal-specific lipocalin-5, beta-hexosaminidase subunit beta precursor and phosphatidylethanolamine-binding protein 4 being the most abundant proteins found. A total of 2886 proteins were identified in the CESperm proteome with 81 proteins being considered more abundant (spectral counts > 100). CEF and CESperm data were compared and 345 proteins were present in both proteomes. Phosphatidylethanolamine-binding protein 4 precursor was the only protein found most abundant in both CEF and CESperm proteomes. Based on Gene Ontology analysis, we identified CEF and CESperm proteins associated with sperm protection against ROS and immune mediated response, glycosaminoglycan degradation, ubiquitin-proteasome system, metabolic process and maturation, modulation of acrosome reaction and ZP binding and oocyte penetration. These results provide a better comprehension about the molecular process and biological pathways involved in sperm epididymis maturation and establishment of the cauda epididymis sperm reservoir.
在本研究中,我们采用多维蛋白质鉴定技术(MudPIT)描述了猪尾精囊液和精子的蛋白质组。 10 头性成熟健康公猪接受手术去势,然后解剖附睾以获取尾精囊内容物。将尾精囊液(CEF)和精子(CESperm)的无角蛋白提取物加载到安捷伦 1100 四元 HPLC 中,从微毛细管柱洗脱的肽直接电喷雾到 LTQ Orbitrap XL 质谱仪中。使用生物信息学,根据蛋白质的分子功能、参与的生物学过程和与精子生理学、生育潜力和保护相关的代谢途径对鉴定出的蛋白质进行分类。在 CEF 中鉴定出 645 种蛋白质,其中附睾特异性脂联素-5、β-己糖胺酶亚基β前体和磷脂酰乙醇胺结合蛋白 4 是最丰富的蛋白质。在 CESperm 蛋白质组中鉴定出 2886 种蛋白质,其中 81 种蛋白质被认为更丰富(光谱计数> 100)。比较 CEF 和 CESperm 数据,有 345 种蛋白质存在于两种蛋白质组中。磷脂酰乙醇胺结合蛋白 4 前体是唯一在 CEF 和 CESperm 蛋白质组中都最丰富的蛋白质。基于基因本体论分析,我们鉴定了与精子抵抗 ROS 和免疫介导反应、糖胺聚糖降解、泛素-蛋白酶体系统、代谢过程和成熟、顶体反应和 ZP 结合及卵母细胞穿透的调节相关的 CEF 和 CESperm 蛋白质。这些结果提供了对精子附睾成熟和尾精囊精子库建立过程中涉及的分子过程和生物学途径的更好理解。