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心脏图谱:缝隙连接、连接蛋白多样性与传导心肌细胞谱系的逆转录病毒研究

A map of the heart: gap junctions, connexin diversity and retroviral studies of conduction myocyte lineage.

作者信息

Gourdie R G

机构信息

Department of Anatomy and Developmental Biology, University College London, U.K.

出版信息

Clin Sci (Lond). 1995 Mar;88(3):257-62. doi: 10.1042/cs0880257.

Abstract
  1. The heartbeat is co-ordinated by organized propagation of electrical excitation through cardiac muscle. Intercellular conduction and propagation of the cardiac action potential is dependent on electrical connections between myocytes, termed gap junctions. 2. In the last few years, our conception of the structure and function of cardiac gap junctions has been revised substantially. It seems that these structures show unexpected levels of specialization within the myocardium and they can no longer be viewed simply as passive conduits for the regulated movement of electrical current between heart muscle cells. 3. In this article, some of the contributions to this field by the author and his collaborators are summarized. Studies using confocal microscopy and digital imaging techniques to characterize the three-dimensional organization of electrical contacts between myocytes in the mature and developing heart are described, data on the unique expression and spatial distribution patterns of gap-junctional subunit proteins (connexins) are given, and finally the author's current work on the differentiation of cardiac conduction tissues, and how this work arose from studies of gap junctions in the heart, is introduced.
摘要
  1. 心跳由电兴奋在心肌中的有序传播协调。心肌细胞间的传导以及心脏动作电位的传播依赖于心肌细胞之间的电连接,即缝隙连接。2. 在过去几年中,我们对心脏缝隙连接的结构和功能的认识有了实质性的修正。这些结构在心肌中似乎表现出意想不到的特化程度,再也不能简单地将它们视为心肌细胞间电流调节运动的被动通道。3. 本文总结了作者及其合作者在该领域的一些贡献。描述了使用共聚焦显微镜和数字成像技术来表征成熟和发育中心脏心肌细胞间电接触的三维组织的研究,给出了缝隙连接亚基蛋白(连接蛋白)独特的表达和空间分布模式的数据,最后介绍了作者目前关于心脏传导组织分化的工作,以及这项工作是如何从对心脏缝隙连接的研究中产生的。

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