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间隙连接膜通道在发育过程中的作用。

The role of gap junction membrane channels in development.

作者信息

Lo C W

机构信息

Biology Department, University of Pennsylvania, Philadelphia 19104-6017, USA.

出版信息

J Bioenerg Biomembr. 1996 Aug;28(4):379-85. doi: 10.1007/BF02110114.

Abstract

In most developmental systems, gap junction-mediated cell-cell communication (GJC) can be detected from very early stages of embryogenesis. This usually results in the entire embryo becoming linked as a syncytium. However, as development progresses, GJC becomes restricted at discrete boundaries, leading to the subdivision of the embryo into communication compartment domains. Analysis of gap junction gene expression suggests that this functional subdivision of GJC may be mediated by the differential expression of the connexin gene family. The temporal-spatial pattern of connexin gene expression during mouse embryogenesis is highly suggestive of a role for gap junctions in inductive interactions, being regionally restricted in distinct developmentally significant domains. Using reverse genetic approaches to manipulate connexin gene function, direct evidence has been obtained for the connexin 43 (Cx43) gap junction gene playing a role in mammalian development. The challenges in the future are the identification of the target cell populations and the cell signaling processes in which Cx43-mediated cell-cell interactions are critically required in mammalian development. Our preliminary observations suggest that neural crest cells may be one such cell population.

摘要

在大多数发育系统中,从胚胎发生的非常早期阶段就可以检测到间隙连接介导的细胞间通讯(GJC)。这通常会导致整个胚胎作为一个合胞体连接在一起。然而,随着发育的进行,GJC在离散的边界处受到限制,导致胚胎细分为通讯隔室区域。对间隙连接基因表达的分析表明,GJC的这种功能细分可能由连接蛋白基因家族的差异表达介导。小鼠胚胎发生过程中连接蛋白基因表达的时空模式强烈暗示间隙连接在诱导相互作用中起作用,在不同的发育重要区域受到区域限制。利用反向遗传学方法操纵连接蛋白基因功能,已获得直接证据表明连接蛋白43(Cx43)间隙连接基因在哺乳动物发育中起作用。未来的挑战是确定在哺乳动物发育中至关重要地需要Cx43介导的细胞间相互作用的靶细胞群体和细胞信号传导过程。我们的初步观察表明神经嵴细胞可能是这样的细胞群体之一。

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