The Frick Center for Heart Failure and Arrhythmia, College of Medicine, Dorothy M. Davis Heart and Lung Research Institute, The Ohio State University Wexner Medical Center, Columbus, OH, USA.
Department of Physiology and Cell Biology, College of Medicine, The Ohio State University, Columbus, OH, USA.
Basic Res Cardiol. 2021 Oct 28;116(1):63. doi: 10.1007/s00395-021-00895-3.
It is widely assumed that synthesis of membrane proteins, particularly in the heart, follows the classical secretory pathway with mRNA translation occurring in perinuclear regions followed by protein trafficking to sites of deployment. However, this view is based on studies conducted in less-specialized cells, and has not been experimentally addressed in cardiac myocytes. Therefore, we undertook direct experimental investigation of protein synthesis in cardiac tissue and isolated myocytes using single-molecule visualization techniques and a novel proximity-ligated in situ hybridization approach for visualizing ribosome-associated mRNA molecules for a specific protein species, indicative of translation sites. We identify here, for the first time, that the molecular machinery for membrane protein synthesis occurs throughout the cardiac myocyte, and enables distributed synthesis of membrane proteins within sub-cellular niches where the synthesized protein functions using local mRNA pools trafficked, in part, by microtubules. We also observed cell-wide distribution of membrane protein mRNA in myocardial tissue from both non-failing and hypertrophied (failing) human hearts, demonstrating an evolutionarily conserved distributed mechanism from mouse to human. Our results identify previously unanticipated aspects of local control of cardiac myocyte biology and highlight local protein synthesis in cardiac myocytes as an important potential determinant of the heart's biology in health and disease.
人们普遍认为,膜蛋白的合成,特别是在心脏中,遵循经典的分泌途径,mRNA 翻译发生在核周区域,随后蛋白质被运输到部署的部位。然而,这种观点是基于在非特化细胞中进行的研究,而在心肌细胞中尚未通过实验来解决。因此,我们使用单分子可视化技术和一种新的邻近连接原位杂交方法,直接在心脏组织和分离的心肌细胞中进行了特定蛋白质翻译位点的核糖体相关 mRNA 分子的可视化实验,从而对心脏组织中的蛋白质合成进行了直接的实验研究。我们首次发现,膜蛋白合成的分子机制存在于整个心肌细胞中,并且能够在亚细胞龛内进行膜蛋白的分布式合成,在这些龛内,合成的蛋白质利用局部 mRNA 池发挥功能,其中部分 mRNA 池是由微管运输的。我们还观察到来自非衰竭和肥大(衰竭)人类心脏的心肌组织中膜蛋白 mRNA 的全细胞分布,这表明从老鼠到人类存在着一种进化保守的分布式机制。我们的研究结果确定了心脏细胞生物学的局部控制的以前未预料到的方面,并强调了心肌细胞中的局部蛋白质合成作为健康和疾病中心脏生物学的一个重要潜在决定因素。