粘合连接
夹层盘
细胞生物学
缝隙连接
桥粒蛋白
生物
肌动蛋白
桥粒
细胞质
锚定
普氏球蛋白
肌节
机械转化
化学
钙粘蛋白
心肌细胞
细胞内
细胞
遗传学
连环素
信号转导
基因
Wnt信号通路
作者
Sarah H. Vermij,Hugues Abriel,Toon A.B. van Veen
出处
期刊:Cardiovascular Research
[Oxford University Press]
日期:2017-01-04
卷期号:: cvw259-cvw259
被引量:162
摘要
This review presents an extensively integrated model of the cardiac intercalated disc (ID), a highly orchestrated structure that connects adjacent cardiomyocytes. Classically, three main structures are distinguished: gap junctions (GJs) metabolically and electrically connect cytoplasm of adjacent cardiomyocytes; adherens junctions (AJs) connect the actin cytoskeleton of adjacent cells; and desmosomes function as cell anchors and connect intermediate filaments. Furthermore, ion channels reside in the ID. Mutations in ID proteins have been associated with cardiac arrhythmias such as Brugada syndrome and arrhythmogenic cardiomyopathy. However, rather than being independent, all ID components work together intensively by multifunctional proteins such as ZO-1, Ankyrin G, and β-catenin, integrating mechanical and electrical functions. GJs form a plaque surrounded by the perinexus in which free connexons reside; the connexome integrates NaV channels, the desmosome and GJs; and the area composita hosts AJs and desmosomes, also integrated as adhering junctions. Furthermore, the transitional junction connects sarcomeres to the plasma membrane. Lastly, this review integrates all these findings in comprehensible figures, illustrating the interdependencies of ID proteins.
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