Ward C R, Kopf G S
Department of Obstetrics and Gynecology, University of Pennsylvania School of Medicine, Philadelphia 19104-6080.
Dev Biol. 1993 Jul;158(1):9-34. doi: 10.1006/dbio.1993.1165.
Fertilization is a unique event in the life of an organism and results from requisite and reciprocal cell-induced sperm and egg activation events mediated by unique cellular and environmental cues associated with either the gametes or the reproductive tract/environment. Sperm interaction with the female reproductive tract/environment and sperm-egg interaction both at a distance and in close proximity represent a series of integrated processes designed to deliver sperm with optimal fertilizing potential to the site of fertilization. The idea that sperm and eggs "communicate" prior to fertilization, and that these communicative processes are requisite for successful fertilization, has been proposed for nearly a century. Recent studies have revealed that many aspects of gamete activation prior and subsequent to fertilization have similarities to intercellular and intracellular signaling systems utilized by somatic cells. The nature of these signaling systems is now being elucidated at the molecular level in both vertebrate and nonvertebrate systems and has revealed some unique aspects of communication and transmembrane signaling between gametes. This review will consider the mechanisms by which eggs communicate with sperm to initiate sperm activation events that are essential for fertilization. It will focus particularly on some of the most recent work surrounding these issues, and new directions and questions that are relevant to this most highly specialized interaction between gametes will be discussed.
受精是生物体生命中的一个独特事件,它源于由与配子或生殖道/环境相关的独特细胞和环境线索介导的必要且相互的细胞诱导的精子和卵子激活事件。精子与雌性生殖道/环境的相互作用以及精子与卵子在远距离和近距离的相互作用代表了一系列综合过程,旨在将具有最佳受精潜力的精子输送到受精部位。精子和卵子在受精前 “交流” 以及这些交流过程是成功受精所必需的这一观点已经提出了近一个世纪。最近的研究表明,受精前后配子激活的许多方面与体细胞利用的细胞间和细胞内信号系统相似。现在,这些信号系统的本质正在脊椎动物和非脊椎动物系统的分子水平上得到阐明,并且揭示了配子之间通讯和跨膜信号传导的一些独特方面。本综述将探讨卵子与精子通讯以启动对受精至关重要的精子激活事件的机制。它将特别关注围绕这些问题的一些最新研究工作,并讨论与配子之间这种高度专业化相互作用相关的新方向和问题。