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精子发生和顶体反应过程中膜融合的调控。

Control of membrane fusion during spermiogenesis and the acrosome reaction.

作者信息

Ramalho-Santos João, Schatten Gerald, Moreno Ricardo D

机构信息

Unit of Reproduction and Development, Physiology Department, Pontifical Catholic University of Chile, 340-213 Santiago, Chile.

出版信息

Biol Reprod. 2002 Oct;67(4):1043-51. doi: 10.1095/biolreprod67.4.1043.

Abstract

Membrane fusion is important to reproduction because it occurs in several steps during the process of fertilization. Many events of intracellular trafficking occur during both spermiogenesis and oogenesis. The acrosome reaction, a key feature during mammalian fertilization, is a secretory event involving the specific fusion of the outer acrosomal membrane and the sperm plasma membrane overlaying the principal piece of the acrosome. Once the sperm has crossed the zona pellucida, the gametes fuse, but in the case of the sperm this process takes place through a specific membrane domain in the head, the equatorial segment. The cortical reaction, a process that prevents polyspermy, involves the exocytosis of the cortical granules to the extracellular milieu. In lower vertebrates, the formation of the zygotic nucleus involves the fusion (syngamia) of the male pronucleus with the female pronucleus. Other undiscovered membrane trafficking processes may also be relevant for the formation of the zygotic centrosome or other zygotic structures. In this review, we focus on the recent discovery of molecular machinery components involved in intracellular trafficking during mammalian spermiogenesis, notably related to acrosome biogenesis. We also extend our discussion to the molecular mechanism of membrane fusion during the acrosome reaction. The data available so far suggest that proteins participating in the intracellular trafficking events leading to the formation of the acrosome during mammalian spermiogenesis are also involved in controlling the acrosome reaction during fertilization.

摘要

膜融合对生殖很重要,因为它在受精过程中发生在几个步骤中。精子发生和卵子发生过程中都会发生许多细胞内运输事件。顶体反应是哺乳动物受精过程中的一个关键特征,是一种分泌事件,涉及顶体外膜与覆盖顶体主体部分的精子质膜的特异性融合。一旦精子穿过透明带,配子就会融合,但就精子而言,这个过程是通过头部的一个特定膜结构域——赤道段进行的。皮质反应是一种防止多精入卵的过程,涉及皮质颗粒向细胞外环境的胞吐作用。在低等脊椎动物中,合子核的形成涉及雄原核与雌原核的融合(配子融合)。其他未被发现的膜运输过程可能也与合子中心体或其他合子结构的形成有关。在这篇综述中,我们重点关注哺乳动物精子发生过程中参与细胞内运输的分子机制组件的最新发现,特别是与顶体生物发生相关的组件。我们还将讨论扩展到顶体反应过程中的膜融合分子机制。目前可得的数据表明,参与哺乳动物精子发生过程中导致顶体形成的细胞内运输事件的蛋白质,也参与控制受精过程中的顶体反应。

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