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首页> 外文期刊>FEBS Open Bio >Identification of distinctive interdomain interactions among ZP-N, ZP-C and other domains of zona pellucida glycoproteins underlying association of chicken egg-coat matrix
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Identification of distinctive interdomain interactions among ZP-N, ZP-C and other domains of zona pellucida glycoproteins underlying association of chicken egg-coat matrix

机译:鉴定ZP-N,ZP-C与鸡卵涂层基质缔合下透明带糖蛋白糖蛋白其他域之间的独特域间相互作用

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The vertebrate egg coat, including mammalian zona pellucida, is an oocyte-specific extracellular matrix comprising two to six zona pellucida (ZP) glycoproteins. The egg coat plays important roles in fertilization, especially in species-specific interactions with sperm to induce the sperm acrosome reaction and to form the block to polyspermy. It is suggested that the physiological functions of the egg coat are mediated and/or regulated coordinately by peptide and carbohydrate moieties of the ZP glycoproteins that are spatially arranged in the egg coat, whereas a comprehensive understanding of the architecture of vertebrate egg-coat matrix remains elusive. Here, we deduced the orientations and/or distributions of chicken ZP glycoproteins, ZP1, ZP3 and ZPD, in the egg-coat matrix by confocal immunofluorescent microscopy, and in the ZP1-ZP3 complexes generated in vitro by co-immunoprecipitation assays. We further confirmed interdomain interactions of the ZP glycoproteins by far-Western blot analyses of the egg-coat proteins and pull-down assays of ZP1 in the serum, using recombinant domains of ZP glycoproteins as probes. Our results suggest that the ZP1 and ZP3 bind through their ZP-C domains to form the ZP1-ZP3 complexes and fibrils, which are assembled into bundles through interactions between the repeat domains of ZP1 to form the ZP1-ZP3 matrix, and that the ZPD molecules self-associate and bind to the ZP1-ZP3 matrix through its ZP-N and ZP-C domains to form the egg-coat matrix. Based on these results, we propose a tentative model for the architecture of the chicken egg-coat matrix that might be applicable to other vertebrate ones.
机译:包括哺乳动物透明带的脊椎动物卵壳是一种卵母细胞特异性细胞外基质,包含2至6个透明带(ZP)糖蛋白。蛋壳在受精中起着重要作用,特别是在与精子的特定物种相互作用中,以诱导精子顶体反应并形成对多精子的阻滞。提示蛋壳的生理功能是由蛋壳中空间排列的ZP糖蛋白的肽和碳水化合物部分介导和/或调节的,而对脊椎动物蛋壳基质的结构的全面了解仍然存在难以捉摸。在这里,我们通过共聚焦免疫荧光显微镜推导了鸡ZP糖蛋白ZP1,ZP3和ZPD的方向和/或分布,这些蛋白在蛋壳基质中以及在体外通过共同免疫沉淀测定法生成的ZP1-ZP3复合物中。我们进一步证实了ZP糖蛋白的域间相互作用,方法是使用ZP糖蛋白的重组结构域作为探针,通过蛋壳蛋白的远西方印迹分析和血清中ZP1的下拉测定法。我们的结果表明,ZP1和ZP3通过其ZP-C域结合形成ZP1-ZP3复合物和原纤维,它们通过ZP1重复域之间的相互作用组装成束,形成ZP1-ZP3基质,而ZPD分子通过其ZP-N和ZP-C结构域自缔合并与ZP1-ZP3基质结合,形成蛋壳基质。基于这些结果,我们提出了一种鸡鸡蛋涂层基质结构的初步模型,该模型可能适用于其他脊椎动物。

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