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透明带“受体”。

The zona pellucida "receptors".

作者信息

Hinsch E, Hägele W, Schill W B, Hinsch K D

机构信息

Center of Dermatology and Andrology, Justus-Liebig-Universität Giessen, Germany.

出版信息

Adv Exp Med Biol. 1997;424:313-28.

PMID:9361810
Abstract

Binding of mammalian sperm to the zona pellucida and the induction of the acrosome reaction are prerequisites for successful oocyte fertilization. In the mouse model, the zona pellucida consists of three sulfated glycoproteins, ZP1, ZP2, and ZP3. Zona pellucida proteins are secreted to form a filamentous zona matrix in which ZP2 and ZP3 complex into co-polymers cross-linked by ZP1. ZP3 is the ligand for primary sperm binding and important for the induction of the acrosome reaction. The zona pellucida glycoprotein ZP2 is also crucially involved in the process of fertilization. Previous reports suggest that ZP2 mediates secondary binding of spermatozoa and that cleavage of ZP2 by proteases released through cortical granule reaction causes zona "hardening" and thus prevents polyspermy. Human and mouse ZP2 proteins differ in the primary structure as derived from cDNA clones. We designed an immunological approach to search for ZP2 domains with functional relevance. Antisera were generated against synthetic peptides derived (a) from ZP2 amino acid sequences that are homologous in human and mouse ZP2 amino acid sequences (AS ZP2-20) or (b) from human ZP2 amino acid sequences that differ from the mouse ZP2 sequence (AS ZP2-26). Immunochemical studies with microbisected bovine zonae pellucidae demonstrated that both antisera, AS ZP2-20 and AS ZP2-26, specifically detected ZP2 protein. Using the competition-hemizona-assay, sperm binding to antibody treated bovine hemizonae pellucidae were compared with control hemizonae (given as hemizona index). Antiserum AS ZP2-20 significantly inhibited binding of spermatozoa to test hemizonae (p < 0.0001), whereas treatment of hemizonae with AS ZP2-26 did not influence sperm-egg interaction. Our results show that antibodies against ZP2 peptides react with bovine zonae pellucidae and can be used as markers for ZP2. Furthermore, AS ZP2-20 identifies a ZP2 epitope that is possibly of functional relevance for sperm-egg interaction.

摘要

哺乳动物精子与透明带的结合以及顶体反应的诱导是卵母细胞成功受精的先决条件。在小鼠模型中,透明带由三种硫酸化糖蛋白ZP1、ZP2和ZP3组成。透明带蛋白分泌后形成丝状的透明带基质,其中ZP2和ZP3通过ZP1交联形成共聚物。ZP3是精子初级结合的配体,对顶体反应的诱导很重要。透明带糖蛋白ZP2在受精过程中也起着关键作用。先前的报道表明,ZP2介导精子的次级结合,并且皮质颗粒反应释放的蛋白酶对ZP2的切割会导致透明带“硬化”,从而防止多精受精。从cDNA克隆推导的人和小鼠ZP2蛋白在一级结构上有所不同。我们设计了一种免疫学方法来寻找具有功能相关性的ZP2结构域。针对(a)来自人和小鼠ZP2氨基酸序列中同源的ZP2氨基酸序列(AS ZP2-20)或(b)来自与人ZP2序列不同的小鼠ZP2氨基酸序列(AS ZP2-26)的合成肽产生抗血清。对微切成两半的牛透明带进行免疫化学研究表明,两种抗血清AS ZP2-20和AS ZP2-26都能特异性检测到ZP2蛋白。使用竞争半透明带分析法,将精子与抗体处理的牛半透明带的结合与对照半透明带进行比较(以半透明带指数表示)。抗血清AS ZP2-20显著抑制精子与测试半透明带的结合(p < 0.0001),而用AS ZP2-26处理半透明带不影响精卵相互作用。我们的结果表明,针对ZP2肽的抗体与牛透明带发生反应,可作为ZP2的标记物。此外,AS ZP2-20识别出一个可能与精卵相互作用具有功能相关性的ZP2表位。

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