Department of Anatomy and Cell Biology, University of Kansas Medical Center, Kansas City, KS 66160, United States.
Cell Calcium. 2013 Jan;53(1):32-40. doi: 10.1016/j.ceca.2012.11.003. Epub 2012 Nov 30.
The oocyte is a highly specialized cell that must respond to fertilization with a preprogrammed series of signal transduction events that establish a block to polyspermy, trigger resumption of the cell cycle and execution of a developmental program. The fertilization-induced calcium transient is a key signal that initiates the process of oocyte activation and studies over the last several years have examined the signaling pathways that act upstream and downstream of this calcium transient. Protein tyrosine kinase signaling was found to be an important component of the upstream pathways that stimulated calcium release at fertilization in oocytes from animals that fertilize externally, but a similar pathway has not been found in mammals which fertilize internally. The following review will examine the diversity of signaling in oocytes from marine invertebrates, amphibians, fish and mammals in an attempt to understand the basis for the observed differences. In addition to the pathways upstream of the fertilization-induced calcium transient, recent studies are beginning to unravel the role of protein tyrosine kinase signaling downstream of the calcium transient. The PYK2 kinase was found to respond to fertilization in the zebrafish system and seems to represent a novel component of the response of the oocyte to fertilization. The potential impact of impaired PTK signaling in oocyte quality will also be discussed.
卵母细胞是一种高度特化的细胞,必须对受精做出反应,通过一系列预先编程的信号转导事件来建立阻止多精入卵的屏障,触发细胞周期的恢复,并执行发育程序。受精诱导的钙瞬变是启动卵母细胞激活过程的关键信号,过去几年的研究检查了作用于该钙瞬变上下游的信号通路。蛋白酪氨酸激酶信号被发现是刺激外部受精动物卵母细胞在受精时钙释放的上游途径的重要组成部分,但在内部受精的哺乳动物中没有发现类似的途径。以下综述将检查来自海洋无脊椎动物、两栖动物、鱼类和哺乳动物的卵母细胞中的信号多样性,试图了解观察到的差异的基础。除了受精诱导钙瞬变的上游途径外,最近的研究还开始揭示钙瞬变下游的蛋白酪氨酸激酶信号的作用。在斑马鱼系统中发现 PYK2 激酶对受精有反应,似乎代表了卵母细胞对受精反应的一个新组成部分。还将讨论卵母细胞中 PTK 信号受损对卵母细胞质量的潜在影响。