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Shining New Light on the Structural Determinants of Cardiac Couplon Function: Insights From Ten Years of Nanoscale Microscopy

机译:心脏偶联功能结构决定因素的新发现:十年纳米显微镜的见解

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摘要

Remodelling of the membranes and protein clustering patterns during the pathogenesis of cardiomyopathies has renewed the interest in spatial visualisation of these structures in cardiomyocytes. Coincidental emergence of single molecule (super-resolution) imaging and tomographic electron microscopy tools in the last decade have led to a number of new observations on the structural features of the couplons, the primary sites of excitation-contraction coupling in the heart. In particular, super-resolution and tomographic electron micrographs have revised and refined the classical views of the nanoscale geometries of couplons, t-tubules and the organisation of the principal calcium handling proteins in both healthy and failing hearts. These methods have also allowed the visualisation of some features which were too small to be detected with conventional microscopy tools. With new analytical capabilities such as single-protein mapping, in situ protein quantification, correlative and live cell imaging we are now observing an unprecedented interest in adapting these research tools across the cardiac biophysical research discipline. In this article, we review the depth of the new insights that have been enabled by these tools toward understanding the structure and function of the cardiac couplon. We outline the major challenges that remain in these experiments and emerging avenues of research which will be enabled by these technologies.
机译:在心肌病的发病机理中,膜的重塑和蛋白质聚集模式的改变引起了人们对心肌细胞中这些结构的空间可视化的兴趣。在过去的十年中,巧合的单分子(超分辨率)成像技术和断层电子显微镜检查工具的出现,导致了对有关双耳的结构特征的许多新观察,这些双耳是心脏中兴奋-收缩偶联的主要部位。尤其是,超分辨率和断层电子显微镜照片已修订并完善了健康和衰竭心脏中couplon,t形小管和主要钙处理蛋白的组织的纳米级几何结构的经典观点。这些方法还可以可视化一些很小的特征,而这些特征太小而无法用常规显微镜工具检测到。借助新的分析功能,例如单蛋白作图,原位蛋白定量,相关和活细胞成像,我们现在对在整个心脏生物物理研究学科中适应这些研究工具的兴趣空前。在本文中,我们回顾了这些工具为了解心脏co的结构和功能所提供的新见解的深度。我们概述了这些实验中仍然存在的主要挑战,以及将通过这些技术实现的新兴研究途径。

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