STAT3 and Endothelial Cell—Cardiomyocyte Dialog in Cardiac Remodeling

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Frontiers Media S.A.

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This article presents an overview of the central role of STAT3 in the crosstalk between endothelial cells and cardiac myocytes in the heart. Endothelial cell STAT3 has a key role in inflammation that underlies cardiovascular disease and impacts on cardiac structure and function. STAT3 in endothelial cells contributes to adverse cardiomyocyte genetic reprograming, for instance, during peripartum cardiomyopathy. Conversely, cardiomyocyte STAT3 is important for maintaining endothelial cell function and capillary integrity with aging and hypertension. In addition, STAT3 serves as a sentinel for stress in the heart. Recent evidence has revealed that the redox nature of STAT3 is regulated, and STAT3 is responsive to oxidative stress (ischemia-reperfusion) so as to induce protective genes. At the level of the mitochondrion, STAT3 is important in regulating reactive oxygen species (ROS) formation, metabolism, and mitochondrial integrity. STAT3 may also control calcium release from the ER so as to limit its subsequent uptake by mitochondria and the induction of cell death. Under normal conditions, some STAT3 localizes to intercalated discs of cardiomyocytes and serves to transmit pro-fibrotic gene induction signals in the nucleus with increased blood pressure. Further research is needed to understand how the sentinel role of STAT3 in both endothelial cells and cardiomyocytes is integrated in order to coordinate the response of the heart to both physiological and pathological demands. © Copyright © 2019 Zouein, Booz and Altara.

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Angiogenesis, Cardiac hypertrophy, Heart failure, Inflammation, Oxidative stress, Signal transduction, Transcription, Activating transcription factor 6, Adenosine triphosphate, Angiotensin ii, Calcium calmodulin dependent protein kinase ii, Chaperone, Cyclic amp responsive element binding protein binding protein, Cyclophilin d, Gamma interferon, Glucose regulated protein 78, Glucose transporter 4, Intercellular adhesion molecule 1, Interleukin 1 receptor associated kinase 1, Interleukin 6, Interleukin 8, Manganese superoxide dismutase, Microrna, Microrna 199a 5p, Mitochondrial permeability transition pore, Monocyte chemotactic protein 1, N(g),n(g) dimethylarginine, Notch1 receptor, Protein arginine methyltransferase, Protein arginine methyltransferase 1, Protein bcl 2, Reduced nicotinamide adenine dinucleotide phosphate, Stat3 protein, Transcription factor fkhrl1, Ubiquitin, Unclassified drug, Vascular cell adhesion molecule 1, Vasculotropin, Cardiac muscle cell, Cell communication, Cell death, Endoplasmic reticulum, Endothelium cell, Extracellular matrix, Fatty acid oxidation, Gene expression, Heart function, Heart protection, Heart ventricle hypertrophy, Heart ventricle remodeling, Hek293t cell line, Human, Hypertension, Hypoxia, Nonhuman, Oncogene n ras, Peripartum cardiomyopathy, Protein expression, Protein phosphorylation, Review, Unfolded protein response, Upregulation

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