Department of Obstetrics and Gynaecology, University of Hong Kong, Queen Mary Hospital, Pokfulam Road, Hong Kong, China; Centre of Reproduction, Development and Growth, LKS Faculty of Medicine, University of Hong Kong, Queen Mary Hospital, Pokfulam Road, Hong Kong, China.
Department of Obstetrics and Gynaecology, University of Hong Kong, Queen Mary Hospital, Pokfulam Road, Hong Kong, China.
Semin Cell Dev Biol. 2014 Jun;30:86-95. doi: 10.1016/j.semcdb.2014.04.016. Epub 2014 Apr 18.
Mammalian oocytes are surrounded by an acellular zona pellucida (ZP). Fertilization begins when a capacitated spermatozoon binds to the ZP. Defective sperm-ZP interaction is a cause of male infertility and reduced fertilization rates in clinical assisted reproduction treatment. Despite the importance of spermatozoa-ZP binding, the mechanisms and regulation of the interaction are unclear partly due to the failure in the identification of ZP receptor on spermatozoa. Most of the previous studies assumed that the sperm ZP receptor is a single molecular species, and a number of potential candidates had been suggested. Yet none of them can be considered as the sole sperm ZP receptor. Accumulated evidence suggested that the sperm ZP receptor is a dynamic multi-molecular structure requiring coordinated action of different proteins that are assembled into a functional complex during post-testicular maturation and capacitation. The complex components may include carbohydrate-binding, protein-binding and acrosomal matrix proteins which work as a suite to mediate spermatozoa-ZP interaction. This article aims to review the latest insights in the identification of the sperm ZP receptor. Continued investigation of the area will provide considerable understanding of the regulation of fertilization that will be useful for practical application in human contraception and reproductive medicine.
哺乳动物卵母细胞被无细胞的透明带(ZP)所包围。当一个获能的精子与 ZP 结合时,受精就开始了。精子-ZP 相互作用的缺陷是男性不育和临床辅助生殖治疗中受精率降低的原因。尽管精子与 ZP 的结合很重要,但由于未能识别精子上的 ZP 受体,其相互作用的机制和调节仍不清楚。大多数先前的研究假设精子 ZP 受体是单一的分子种类,并且已经提出了一些潜在的候选者。然而,没有一种可以被认为是唯一的精子 ZP 受体。越来越多的证据表明,精子 ZP 受体是一种动态的多分子结构,需要不同蛋白质的协调作用,这些蛋白质在睾丸后成熟和获能过程中组装成一个功能复合物。该复合物的组成部分可能包括糖结合蛋白、蛋白结合蛋白和顶体基质蛋白,它们作为一个套件共同介导精子与 ZP 的相互作用。本文旨在综述精子 ZP 受体鉴定的最新进展。对该领域的持续研究将为受精的调控提供更深入的了解,这对于人类避孕和生殖医学的实际应用将是非常有用的。