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Equine zona protein synthesis and ZP structure during folliculogenesis, oocyte maturation, and embryogenesis.

机译:马卵泡蛋白合成和卵泡形成,卵母细胞成熟和胚胎发生过程中的ZP结构。

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In the equine, the zona pellucida (ZP) is the major barrier to successful in vitro fertilization. Therefore the aim of our studies was to analyze species-specific features of the equine ZP in regard to structure and glycoprotein ZPB and ZPC expression sites during oocyte development and embryogenesis. The equine ZP revealed high immunological cross-reactivity to porcine ZPB and ZPC. In the ovary, the distribution of ZPB and ZPC was co-localized and correlated with the developmental stage of the follicle. ZPB and ZPC expression started in the oocyte of the late primordial and primary follicle. In the secondary follicle, both the oocyte and the cumulus cells contributed to ZPB and ZPC synthesis. After in vivo maturation the oocyte stopped ZPB and ZPC production whereas the cumulus cells continued synthesis. Contrary, in vitro matured (IVM) cumulus-oocyte-complexes (COCs) revealed a reverse expression pattern. This was correlated to alterations in the distribution, number, and size of pores in the ZP. In the zona, N-acetylglucosamine residues were co-localized with ZPC. The acellular glycoprotein capsule surrounding early equine embryos was negative for ZPB and ZPC. Our results imply that in the horse ZPB and ZPC glycoprotein expression is differentially regulated during folliculogenesis, oocyte maturation, and embryogenesis. Contrary to the bovine and porcine, zona protein synthesis during in vivo maturation is completely overtaken by the cumulus cells implying that in the horse these cells are crucial for zona integrity. During IVM, the cumulus cells lose their ability to synthesize glycoproteins leading to alterations in the zona structure.
机译:在马中,透明带(ZP)是成功进行体外受精的主要障碍。因此,我们研究的目的是分析在卵母细胞发育和胚胎发生过程中马ZP在结构和糖蛋白ZPB和ZPC表达位点方面的物种特异性特征。马ZP显示出对猪ZPB和ZPC的高度免疫交叉反应性。在卵巢中,ZPB和ZPC的分布共定位并与卵泡的发育阶段相关。 ZPB和ZPC表达开始于原始卵泡和初级卵泡的卵母细胞。在次级卵泡中,卵母细胞和卵丘细胞都促进了ZPB和ZPC的合成。体内成熟后,卵母细胞停止ZPB和ZPC的产生,而卵丘细胞继续合成。相反,体外成熟(IVM)卵-卵母细胞复合体(COC)显示出反向表达模式。这与ZP中孔的分布,数量和大小的变化有关。在透明带中,N-乙酰氨基葡萄糖残基与ZPC共定位。围绕马早期胚胎的脱细胞糖蛋白囊膜对ZPB和ZPC呈阴性。我们的结果表明,在马中,卵泡形成,卵母细胞成熟和胚胎发生过程中,ZPB和ZPC糖蛋白表达受到差异调节。与牛和猪相反,体内成熟过程中的透明带蛋白合成被卵丘细胞完全取代,这意味着在马中这些细胞对于透明带完整性至关重要。在IVM期间,卵丘细胞失去合成糖蛋白的能力,从而导致透明带结构的改变。

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