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发育中大脑中缝隙连接的结构与功能。

Structure and function of gap junctions in the developing brain.

作者信息

Bruzzone Roberto, Dermietzel Rolf

机构信息

Department of Neuroscience, Institut Pasteur, 75015 Paris, France.

出版信息

Cell Tissue Res. 2006 Nov;326(2):239-48. doi: 10.1007/s00441-006-0287-0. Epub 2006 Aug 1.

Abstract

Gap-junction-dependent neuronal communication is widespread in the developing brain, and the prevalence of gap-junctional coupling is well correlated with specific developmental events. We summarize here our current knowledge of the contribution of gap junctions to brain development and propose that they carry out this role by taking advantage of the full complement of their functional properties. Thus, hemichannel activation may represent a key step in the initiation of Ca(2+) waves that coordinate cell cycle events during early prenatal neurogenesis, whereas both hemichannels and/or gap junctions may control the division and migration of cohorts of precursor cells during late prenatal neurogenesis. Finally, the recent discovery that pannexins, a novel group of proteins prominently expressed in the brain, are able to form both hemichannels and gap-junction channels suggests that we need to seek more than just connexins with respect to these junctions.

摘要

依赖缝隙连接的神经元通讯在发育中的大脑中广泛存在,缝隙连接耦合的发生率与特定的发育事件密切相关。我们在此总结目前关于缝隙连接对大脑发育贡献的认识,并提出它们通过利用其全部功能特性来发挥这一作用。因此,半通道激活可能是启动钙(Ca2+)波的关键步骤,该钙波在产前早期神经发生过程中协调细胞周期事件,而半通道和/或缝隙连接可能在产前晚期神经发生过程中控制前体细胞群的分裂和迁移。最后,最近发现泛连接蛋白(一类在大脑中大量表达的新型蛋白质)能够形成半通道和缝隙连接通道,这表明对于这些连接,我们需要寻找的不仅仅是连接蛋白。

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