哺乳动物卵子激活的早期离子事件。

D Ben-Yosef, R Shalgi
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引用次数: 48

摘要

哺乳动物卵子受精时,精子最初与卵质膜结合,然后与卵质膜融合。这一关键事件激活了卵子内特定的生化途径。卵子的激活一方面诱导减数分裂的恢复和胚胎有丝分裂的快速开始,另一方面皮质颗粒胞吐导致透明带的修饰和多精子的阻断。研究表明,在不同的系统中,细胞内离子浓度的变化可以作为信号转导机制的第二信使。使用特定的荧光探针,结合图像分析技术,便于在活细胞中实时测量它们的动态,从而评估它们在哺乳动物卵子激活中的作用。本文综述了细胞内Ca2+和pH的动态及其在将精子信号转导到下游细胞周期调节因子中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Early ionic events in activation of the mammalian egg.

At fertilization of the mammalian egg, the spermatozoon initially binds to and then fuses with the egg plasma membrane. This critical event activates specific biochemical pathways within the egg. Activation of the egg induces resumption of meiosis and the start of rapid embryonic mitotic divisions on the one hand, and cortical granule exocytosis leading to modification of the zona pellucida and a block to polyspermy on the other. It has been shown in different systems that changes in intracellular ion concentrations can serve as second messengers of signal transduction mechanisms. The use of specific fluorescence probes, combined with the image analysis technique, facilitates the measurement of their dynamics in real time in the living cell and, thereby, assessment of their role in activation of the mammalian egg. This review focuses on the dynamics of intracellular Ca2+ and pH and their role in transducing the sperm signal to downstream cell cycle regulators.

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