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首页> 外文期刊>Molecular reproduction and development >Baculovirus expressed C-terminal fragment of bonnet monkey (Macaca radiata) zona pellucida glycoprotein-3 inhibits ZP3-mediated induction of acrosomal exocytosis
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Baculovirus expressed C-terminal fragment of bonnet monkey (Macaca radiata) zona pellucida glycoprotein-3 inhibits ZP3-mediated induction of acrosomal exocytosis

机译:杆状病毒表达的monkey猴(Macaca radiata)透明带糖蛋白-3的C端片段抑制ZP3介导的顶体胞吐作用的诱导

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摘要

Zona pellucida glycoprotein-3 (ZP3) has been postulated as the primary sperm receptor in various mammalian species including bonnet monkey (Macaca radiata). However, information on the domain responsible for its binding to spermatozoa is inadequate. In the present study, bonnet monkey ZP3 (bmZP3), corresponding to amino acid (aa) residues 223-348 [bmZP3(223-348)] has been cloned and expressed using baculovirus expression system. SDS-PAGE and Western blot analysis of the purified renatured recombinant protein revealed it as a closely spaced doublet of approximately 25 kDa. Lectin-binding studies documented the presence of both O- as well as N-linked glycans. The biotinylated r-bmZP3(223-348) binds to the acrosomal region of the capacitated spermatozoa but fails to bind to the acrosome-reacted spermatozoa as investigated by immunofluorescence studies. In ELISA, nonbiotinylated r-bmZP3(223-348) and baculovirus expressed r-bmZP3, devoid of signal sequence and transmembrane-like domain [r-bmZP3(23-348)] competitively inhibit its binding to the capacitated spermatozoa. Interestingly, binding of biotinylated r-bmZP3(23-348) to the capacitated sperm is also inhibited by nonbiotinylated r-bmZP3(223-348). In contrast to r-bmZP3(23-348), r-bmZP3(223-348) failed to induce acrosomal exocytosis in the capacitated sperm. Interestingly, it competitively inhibits the acrosomal exocytosis induced by r-bmZP3(23-348). These studies, for the first time, identify a domain of ZP3 capable of binding to capacitated spermatozoa and inhibiting ZP3-mediated induction of acrosomal exocytosis furthering our understanding of mammalian fertilization.
机译:透明带糖蛋白3(ZP3)已被假定为包括帽猴(Macaca radiata)在内的各种哺乳动物的主要精子受体。但是,有关负责与精子结合的域的信息不足。在本研究中,已使用杆状病毒表达系统克隆并表达了对应于氨基酸(aa)残基223-348 [bmZP3(223-348)]的帽子猴ZP3(bmZP3)。纯化的复性重组蛋白的SDS-PAGE和Western blot分析表明,它是大约25 kDa的紧密间隔的双峰。凝集素结合研究记录了O-和N-连接聚糖的存在。通过免疫荧光研究表明,生物素化的r-bmZP3(223-348)结合到带功能的精子的顶体区域,但不能结合到顶体反应的精子。在ELISA中,非生物素化的r-bmZP3(223-348)和杆状病毒表达了r-bmZP3,没有信号序列,跨膜样结构域[r-bmZP3(23-348)]竞争性地抑制了其与获胜精子的结合。有趣的是,非生物素化的r-bmZP3(223-348)也抑制了生物素化的r-bmZP3(23-348)与获能的精子的结合。与r-bmZP3(23-348)相比,r-bmZP3(223-348)无法在获能的精子中诱导顶体胞吐作用。有趣的是,它竞争性抑制r-bmZP3(23-348)诱导的顶体胞吐作用。这些研究首次确定了能够结合有能力的精子并抑制ZP3介导的顶体胞吐作用的ZP3结构域,这进一步加深了我们对哺乳动物受精的理解。

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