Gadella B M
Department of Farm Animal Health and of Biochemistry and Cell Biology, Faculty of Veterinary Medicine, Utrecht University, Yalelaan 2, 3584 CM Utrecht, The Netherlands.
Reprod Fertil Dev. 2012;25(1):26-37. doi: 10.1071/RD12277.
Recent findings have refined our thinking on sperm interactions with the cumulus-oocyte complex (COC) and our understanding of how, at the molecular level, the sperm cell fertilises the oocyte. Proteomic analyses has identified a capacitation-dependent sperm surface reordering that leads to the formation of functional multiprotein complexes involved in zona-cumulus interactions in several mammalian species. During this process, multiple docking of the acrosomal membrane to the plasma membrane takes place. In contrast with the dogma that the acrosome reaction is initiated when spermatozoa bind to the zona pellucida (ZP), it has been established recently that, in mice, the fertilising spermatozoon initiates its acrosome reaction during its voyage through the cumulus before it reaches the ZP. In fact, even acrosome-reacted mouse spermatozoa collected from the perivitelline space can fertilise another ZP-intact oocyte. The oviduct appears to influence the extracellular matrix properties of the spermatozoa as well as the COC. This may influence sperm binding and penetration of the cumulus and ZP, and, in doing so, increase monospermic while decreasing polyspermic fertilisation rates. Structural analysis of the ZP has shed new light on how spermatozoa bind and penetrate this structure and how the cortical reaction blocks sperm-ZP interactions. The current understanding of sperm interactions with the cumulus and ZP layers surrounding the oocyte is reviewed with a special emphasis on the lack of comparative knowledge on this topic in humans, as well as in most farm mammals.
最近的研究结果完善了我们对精子与卵丘 - 卵母细胞复合体(COC)相互作用的认识,以及我们对精子细胞如何在分子水平上使卵母细胞受精的理解。蛋白质组学分析已确定了一种依赖获能的精子表面重排,这种重排导致在几种哺乳动物物种中形成参与透明带 - 卵丘相互作用的功能性多蛋白复合物。在此过程中,顶体膜与质膜发生多次对接。与精子与透明带(ZP)结合时引发顶体反应的传统观念相反,最近已经确定,在小鼠中,受精精子在到达ZP之前穿过卵丘的过程中就开始了顶体反应。事实上,即使是从卵周隙收集的已发生顶体反应的小鼠精子也能使另一个ZP完整的卵母细胞受精。输卵管似乎会影响精子以及COC的细胞外基质特性。这可能会影响精子与卵丘和ZP的结合及穿透,从而提高单精受精率,同时降低多精受精率。对ZP的结构分析为精子如何结合和穿透该结构以及皮质反应如何阻断精子 - ZP相互作用提供了新的线索。本文综述了目前对精子与围绕卵母细胞的卵丘和ZP层相互作用的理解,特别强调了人类以及大多数农场哺乳动物在这一主题上缺乏比较性知识的情况。