Bennett Pauline M
The Randall Centre for Cell and Molecular Biophysics, School of Basic and Medical Biosciences, New Hunt's House, Guy's Campus, Kings College London, London, SE1 1UL, UK.
Biophys Rev. 2018 Aug;10(4):955-959. doi: 10.1007/s12551-018-0438-z. Epub 2018 Jul 9.
Cardiomyocytes interact with each other at their ends through the specialised membrane complex, the intercalated disck (ID). It is a fascinating structure. It allows cardiomyocytes to interact with several neighbouring cells, thereby allowing the complex structure of the heart to develop. It acts as tension transducer, structural prop, and multi signalling domain as well as a regulator of growth. It achieves its many functions through a number of specialised domains and intercellular junctions associated with its complex folded membrane. This review outlines the results of some 20 years of fascination with the ups and downs of the ID. These include locating the spectrin-associated membrane cytoskeleton in the ID and investigating the role of Protein 4.1R in calcium signalling; structural studies of the relationship of the ID to myofibrils, sarcoplasmic reticulum and mitochondria and, finally, consideration of the role of the ID in cardiomyocyte growth and heart disease.
心肌细胞通过特殊的膜复合体——闰盘(ID)在其末端相互作用。闰盘是一种迷人的结构。它使心肌细胞能够与多个相邻细胞相互作用,从而使心脏的复杂结构得以发育。闰盘起着张力传感器、结构支撑物、多信号域以及生长调节器的作用。它通过与其复杂折叠膜相关的一些特殊结构域和细胞间连接实现其多种功能。本综述概述了大约20年来对闰盘兴衰的研究成果。这些成果包括确定闰盘中与血影蛋白相关的膜细胞骨架的位置,以及研究蛋白4.1R在钙信号传导中的作用;对闰盘与肌原纤维、肌浆网和线粒体关系的结构研究,最后是对闰盘在心肌细胞生长和心脏病中作用的思考。