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哺乳动物卵透明带的新见解。

New Insights into the Mammalian Egg Zona Pellucida.

机构信息

Department of Cell Biology and Histology, Faculty of Medicine and Nursing, University of Murcia, Campus Mare Nostrum and IMIB-Arrixaca, 30100 Murcia, Spain.

Laboratoire de Biométrie et Biologie Evolutive, UMR5558, CNRS, Université Claude Bernard Lyon 1, Université de Lyon, 69100 Villeurbanne, France.

出版信息

Int J Mol Sci. 2021 Mar 23;22(6):3276. doi: 10.3390/ijms22063276.

DOI:10.3390/ijms22063276
PMID:33806989
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8005149/
Abstract

Mammalian oocytes are surrounded by an extracellular coat called the zona pellucida (ZP), which, from an evolutionary point of view, is the most ancient of the coats that envelope vertebrate oocytes and conceptuses. This matrix separates the oocyte from cumulus cells and is responsible for species-specific recognition between gametes, preventing polyspermy and protecting the preimplantation embryo. The ZP is a dynamic structure that shows different properties before and after fertilization. Until very recently, mammalian ZP was believed to be composed of only three glycoproteins, ZP1, ZP2 and ZP3, as first described in mouse. However, studies have revealed that this composition is not necessarily applicable to other mammals. Such differences can be explained by an analysis of the molecular evolution of the ZP gene family, during which ZP genes have suffered pseudogenization and duplication events that have resulted in differing models of ZP protein composition. The many discoveries made in recent years related to ZP composition and evolution suggest that a compilation would be useful. Moreover, this review analyses ZP biosynthesis, the role of each ZP protein in different mammalian species and how these proteins may interact among themselves and with other proteins present in the oviductal lumen.

摘要

哺乳动物卵母细胞被一层称为透明带(ZP)的细胞外基质所包围,从进化的角度来看,它是包裹脊椎动物卵母细胞和胚胎的最古老的基质之一。这种基质将卵母细胞与卵丘细胞分开,并负责配子之间的种特异性识别,防止多精受精并保护着床前胚胎。ZP 是一种动态结构,在受精前后表现出不同的特性。直到最近,人们一直认为哺乳动物 ZP 仅由三种糖蛋白 ZP1、ZP2 和 ZP3 组成,如在小鼠中首次描述的那样。然而,研究表明,这种组成并不一定适用于其他哺乳动物。这种差异可以通过对 ZP 基因家族的分子进化分析来解释,在此过程中,ZP 基因经历了假基因化和复制事件,导致 ZP 蛋白组成的不同模型。近年来与 ZP 组成和进化相关的许多发现表明,进行汇编将是有用的。此外,本综述分析了 ZP 的生物合成、每种 ZP 蛋白在不同哺乳动物物种中的作用,以及这些蛋白如何相互作用以及与输卵管腔中存在的其他蛋白相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/f5e21623b7ce/ijms-22-03276-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/fcba3c8a48ac/ijms-22-03276-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/b2399e97bbc1/ijms-22-03276-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/c523d818f2a1/ijms-22-03276-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/7120a2dd3b16/ijms-22-03276-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/f5e21623b7ce/ijms-22-03276-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/fcba3c8a48ac/ijms-22-03276-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/b2399e97bbc1/ijms-22-03276-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/c523d818f2a1/ijms-22-03276-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/7120a2dd3b16/ijms-22-03276-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b298/8005149/f5e21623b7ce/ijms-22-03276-g005.jpg

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