Miwa Naofumi
Department of Physiology, School of Medicine, Toho University, Tokyo, Japan.
J Physiol Sci. 2015 Nov;65(6):507-14. doi: 10.1007/s12576-015-0402-7. Epub 2015 Sep 29.
Fertilization is a highly coordinated process whereby sperm interact with the egg-coating envelope (called the zona pellucida, ZP) in a taxon-restricted manner, Fertilization triggers the resumption of the cell cycle of the egg, ultimately leading to generation of a new organism that contains hereditary information of the parents. The complete sperm-ZP interaction comprises sperm recognition of the ZP, the acrosome reaction, penetration of the ZP, and fusion with the egg. Recent evidence suggests that these processes involve oligosaccharides associated with a ZP constituent (termed ZP protein), the polypeptide backbone of a ZP protein, and/or the proper three-dimensional filamentous structure of the ZP. However, a detailed description of the molecular mechanisms involved in sperm-ZP interaction remains elusive. Recently, I found that dicalcin, a novel ZP protein-associated protein, suppresses fertilization through its association with gp41, the frog counterpart of the mammalian ZPC protein. This review focuses on molecular aspects of sperm-ZP interaction and describes the fertilization-suppressive function of dicalcin and associated molecular mechanisms. The amount of dicalcin in the ZP significantly correlates with alteration of the lectin-staining pattern within the ZP and the orientation pattern of ZP filaments, which may assist in elucidating the complex molecular mechanisms that underlie sperm-ZP interaction.
受精是一个高度协调的过程,在此过程中精子以分类群限制的方式与卵包膜(称为透明带,ZP)相互作用。受精触发卵子细胞周期的恢复,最终导致产生一个包含父母遗传信息的新生物体。完整的精子与ZP相互作用包括精子对ZP的识别、顶体反应、穿透ZP以及与卵子融合。最近的证据表明,这些过程涉及与ZP成分(称为ZP蛋白)相关的寡糖、ZP蛋白的多肽主链和/或ZP的适当三维丝状结构。然而,精子与ZP相互作用所涉及的分子机制的详细描述仍然难以捉摸。最近,我发现双钙蛋白,一种新型的与ZP蛋白相关的蛋白质,通过与gp41(哺乳动物ZPC蛋白的青蛙对应物)结合来抑制受精。这篇综述聚焦于精子与ZP相互作用的分子方面,并描述了双钙蛋白的受精抑制功能及相关分子机制。ZP中双钙蛋白的量与ZP内凝集素染色模式的改变以及ZP细丝的取向模式显著相关,这可能有助于阐明精子与ZP相互作用背后复杂的分子机制。