Mizuno Masashi, Harris Claire L, Johnson Peter M, Morgan B Paul
Complement Biology Group, Department of Medical Biochemistry and Immunology, University of Wales College of Medicine, Cardiff CF14 4XN, United Kingdom.
Biol Reprod. 2004 Oct;71(4):1374-83. doi: 10.1095/biolreprod.104.030114. Epub 2004 Jun 23.
The rat analogue of the complement regulator membrane cofactor protein (MCP; CD46) was recently cloned and analysis at the mRNA level suggested that expression was restricted to testis. In light of the proposed roles of human MCP in sperm-egg interaction, we undertook to analyze rat MCP expression at the protein level in order better to address its putative role in fertilization. Recombinant fusion proteins comprising antibody Fc and specific domains of rat MCP were generated and used to develop a monoclonal antibody, MM.1, specific for rat MCP. Immunohistochemistry using these reagents confirmed the reported testis-specific expression of MCP in sexually mature rats and demonstrated that MCP was expressed only by spermatozoa and their immediate precursors in spermiogenesis, spermatids. Prepubertal male rats did not express MCP, and there was no evidence of MCP expression at any site in the embryo. Spermatozoal MCP expression was restricted to the inner acrosomal membrane, exposed only after fixation or induction of the acrosome reaction. Acrosome-reacted but not unreacted spermatozoa bound methylamine-activated C3 immobilized on plastic. The retention of MCP at this subcellular site, which is probably crucial to sperm-egg interaction, and the functional demonstration of binding to activated C3 strengthen suggestions from human studies that MCP may play an important role in fertilization. The reagents and results described here will enable studies of the role of spermatozoal MCP in sperm-egg interaction using a relevant animal model system.
补体调节因子膜辅因子蛋白(MCP;CD46)的大鼠类似物最近被克隆出来,mRNA水平的分析表明其表达仅限于睾丸。鉴于人MCP在精卵相互作用中的假定作用,我们着手在蛋白质水平分析大鼠MCP的表达,以便更好地探讨其在受精中的假定作用。制备了包含抗体Fc和大鼠MCP特定结构域的重组融合蛋白,并用于开发一种对大鼠MCP具有特异性的单克隆抗体MM.1。使用这些试剂进行的免疫组织化学证实了在性成熟大鼠中报道的MCP睾丸特异性表达,并表明MCP仅由精子及其精子发生过程中紧邻的前体细胞、精子细胞表达。青春期前雄性大鼠不表达MCP,胚胎任何部位均无MCP表达的证据。精子MCP表达仅限于顶体内膜,仅在固定或诱导顶体反应后才暴露。顶体反应后的精子而非未反应的精子能结合固定在塑料上的甲胺激活的C3。MCP在这个亚细胞位点的保留,这可能对精卵相互作用至关重要,以及与激活的C3结合的功能证明,强化了来自人体研究的观点,即MCP可能在受精中起重要作用。本文所述的试剂和结果将有助于利用相关动物模型系统研究精子MCP在精卵相互作用中的作用。