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首页> 外文期刊>The international journal of developmental biology >Structure and function of gap junction proteins: role of gap junction proteins in embryonic heart development
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Structure and function of gap junction proteins: role of gap junction proteins in embryonic heart development

机译:间隙连接蛋白的结构和功能:间隙连接蛋白在胚胎心脏发育中的作用

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摘要

Intercellular (cell-to-cell) Communication is a crucial and complex mechanism during embryonic heart development. In the cardiovascular system, the beating of the heart is a dynamic and key regulatory process, which is functionally regulated by the coordinated spread of electrical activity through heart muscle cells. Heart tissues are composed of individual cells, each bearing specialized cell surface membrane structures called gap junctions that permit the intercellular exchange of ions and low molecular weight molecules. Gap junction channels are essential in normal heart function and they assist in the mediated spread of electrical impulses that stimulate synchronized contraction (via an electrical syncytium) of cardiac tissues. This present review describes the current knowledge of gap junction biology. In the first part, we summarise some relevant biochemical and physiological properties of gap junction proteins, including their structure and function. In the second part, we review the current evidence demonstrating the role of gap junction proteins in embryonic development with particular reference to those involved in embryonic heart development. Genetics and transgenic animal studies of gap junction protein function in embryonic heart development are considered and the alteration/disruption of gap junction intercellular communication which may lead to abnormal heart development is also discussed.
机译:细胞间(细胞间)通讯是胚胎心脏发育过程中至关重要的复杂机制。在心血管系统中,心脏的跳动是一个动态且关键的调节过程,其功能是通过电活动在心肌细胞中的协调传播来调节的。心脏组织由单个细胞组成,每个细胞带有专门的细胞表面膜结构,称为间隙连接,可以进行离子和低分子量分子的细胞间交换。间隙连接通道在正常的心脏功能中是必不可少的,它们有助于电脉冲的介导扩散,刺激心脏组织的同步收缩(通过电合胞体)。这篇综述描述了间隙连接生物学的最新知识。在第一部分中,我们总结了间隙连接蛋白的一些相关生化和生理特性,包括其结构和功能。在第二部分中,我们回顾了目前证明间隙连接蛋白在胚胎发育中的作用的证据,特别是涉及那些参与胚胎心脏发育的证据。考虑了间隙连接蛋白在胚胎心脏发育中的遗传学和转基因动物研究,并讨论了可能导致心脏发育异常的间隙连接细胞间通讯的改变/破坏。

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