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鉴定牛卵透明带糖蛋白 ZP4 N 端结构域中的精子结合位点。

Identification of Sperm-Binding Sites in the N-Terminal Domain of Bovine Egg Coat Glycoprotein ZP4.

机构信息

Department of Chemistry, Graduate School of Science, Chiba University, Chiba 263-8522, Japan.

Department of Chemistry, Faculty of Science, Chiba University, Chiba 263-8522, Japan.

出版信息

Int J Mol Sci. 2022 Jan 11;23(2):762. doi: 10.3390/ijms23020762.

Abstract

The species-selective interaction between sperm and egg at the beginning of mammalian fertilisation is partly mediated by a transparent envelope called the zona pellucida (ZP). The ZP is composed of three or four glycoproteins (ZP1-ZP4). The functions of the three proteins present in mice (ZP1-ZP3) have been extensively studied. However, the biological role of ZP4, which was found in all other mammals studied so far, has remained largely unknown. Previously, by developing a solid support assay system, we showed that ZP4 exhibits sperm-binding activity in bovines and the N-terminal domain of bovine ZP4 (bZP4 ZP-N1 domain) is a sperm-binding region. Here, we show that bovine sperm bind to the bZP4 ZP-N1 domain in a species-selective manner and that N-glycosylation is not required for sperm-binding activity. Moreover, we identified three sites involved in sperm binding (site I: from Gln-41 to Pro-46, site II: from Leu-65 to Ser-68 and site III: from Thr-108 to Ile-123) in the bZP4 ZP-N1 domain using chimeric bovine/porcine and bovine/human ZP4 recombinant proteins. These results provide in vitro experimental evidence for the role of the bZP4 ZP-N1 domain in mediating sperm binding to the ZP.

摘要

哺乳动物受精过程中,精子和卵子在早期的种属选择性相互作用部分是由一个透明的囊称为透明带(ZP)介导的。ZP 由三种或四种糖蛋白(ZP1-ZP4)组成。在小鼠中,三种蛋白(ZP1-ZP3)的功能已被广泛研究。然而,迄今为止在所有研究过的哺乳动物中都存在的 ZP4 的生物学作用在很大程度上仍然未知。以前,通过开发一种固相支持检测系统,我们表明 ZP4 在牛中具有精子结合活性,并且牛 ZP4 的 N 端结构域(bZP4 ZP-N1 结构域)是一个精子结合区域。在这里,我们表明牛精子以种属选择性的方式与 bZP4 ZP-N1 结构域结合,并且精子结合活性不需要 N-糖基化。此外,我们使用牛/猪和牛/人 ZP4 重组蛋白鉴定了 bZP4 ZP-N1 结构域中参与精子结合的三个位点(位点 I:从 Gln-41 到 Pro-46,位点 II:从 Leu-65 到 Ser-68,位点 III:从 Thr-108 到 Ile-123)。这些结果为 bZP4 ZP-N1 结构域介导精子与 ZP 结合提供了体外实验证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9453/8775842/23188bd91198/ijms-23-00762-g001.jpg

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