首页> 美国卫生研究院文献>Biomolecules >The Hinge Region of Bovine Zona Pellucida Glycoprotein ZP3 Is Involved in the Formation of the Sperm-Binding Active ZP3/ZP4 Complex
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The Hinge Region of Bovine Zona Pellucida Glycoprotein ZP3 Is Involved in the Formation of the Sperm-Binding Active ZP3/ZP4 Complex

机译:牛Zona Pellucida糖蛋白ZP3的铰链区域参与精子结合活性ZP3 / ZP4复合物的形成。

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摘要

The zona pellucida (ZP) surrounds the mammalian oocyte and mediates species-selective sperm-oocyte interactions. Bovine ZP consists of glycoproteins ZP2, ZP3, and ZP4. Neither ZP3 nor ZP4 alone shows inhibitory activity for the binding of sperm to the ZP; however, this activity is seen with the ZP3/ZP4 heterocomplex. Here, we constructed a series of bovine ZP3 mutants to identify the ZP4-binding site on ZP3. Each ZP3 mutant was co-expressed with ZP4 using a baculovirus-Sf9 cell expression system and examined for interaction with ZP4 as well as inhibitory activity for sperm-ZP binding. N-terminal fragment Arg-32 to Arg-160 of ZP3 interacted with ZP4 and inhibited sperm-ZP binding, whereas fragment Arg-32 to Thr-155 showed much weaker interaction with ZP4. Mutation of N-glycosylated Asn-146 to Asp in the N-terminal fragment Arg-32 to Glu-178 of ZP3 did not interrupt the interaction of this fragment with ZP4, but it did reduce the inhibitory activity of the complex for sperm-ZP binding. In contrast, mutation of N-glycosylated Asn-124 to Asp did not significantly reduce the activity. Taken together, these results suggest that one of the ZP4 binding sites exists in the flexible hinge region of ZP3 and that the N-glycosylation in this region is involved in the sperm binding.
机译:透明带(ZP)围绕着哺乳动物卵母细胞并介导物种选择性精子-卵母细胞的相互作用。牛ZP由糖蛋白ZP2,ZP3和ZP4组成。单独的ZP3和ZP4都没有表现出对精子与ZP结合的抑制活性。但是,ZP3 / ZP4异源复合物具有这种活性。在这里,我们构建了一系列的牛ZP3突变体,以识别ZP3上的ZP4结合位点。使用杆状病毒-Sf9细胞表达系统将每个ZP3突变体与ZP4共表达,并检查与ZP4的相互作用以及对精子-ZP结合的抑制活性。 ZP3的N末端片段Arg-32至Arg-160与ZP4相互作用并抑制了精子-ZP的结合,而片段Arg-32至Thr-155则与ZP4相互作用弱得多。 ZP3的N端片段Arg-32中的N-糖基化的Asn-146突变为Asp到Glu-178不会破坏该片段与ZP4的相互作用,但确实降低了复合物对精子ZP的抑制活性。捆绑。相反,N-糖基化的Asn-124向Asp的突变并没有显着降低活性。总之,这些结果表明ZP4结合位点之一存在于ZP3的柔性铰链区中,并且该区域中的N-糖基化参与了精子结合。

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