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Citations to this article

Exercise promotes a cardioprotective gene program in resident cardiac fibroblasts
Janet K. Lighthouse, … , Alex Rosenberg, Eric M. Small
Janet K. Lighthouse, … , Alex Rosenberg, Eric M. Small
Published January 10, 2019
Citation Information: JCI Insight. 2019;4(1):e92098. https://doi.org/10.1172/jci.insight.92098.
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Research Article Cardiology Cell biology

Exercise promotes a cardioprotective gene program in resident cardiac fibroblasts

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Abstract

Exercise and heart disease both induce cardiac remodeling, but only disease causes fibrosis and compromises heart function. The cardioprotective benefits of exercise have been attributed to changes in cardiomyocyte physiology, but the impact of exercise on cardiac fibroblasts (CFs) is unknown. Here, RNA-sequencing reveals rapid divergence of CF transcriptional programs during exercise and disease. Among the differentially expressed programs, NRF2-dependent antioxidant genes — including metallothioneins (Mt1 and Mt2) — are induced in CFs during exercise and suppressed by TGF-β/p38 signaling in disease. In vivo, mice lacking Mt1/2 exhibit signs of cardiac dysfunction in exercise, including cardiac fibrosis, vascular rarefaction, and functional decline. Mechanistically, exogenous MTs derived from fibroblasts are taken up by cultured cardiomyocytes, reducing oxidative damage–dependent cell death. Importantly, suppression of MT expression is conserved in human heart failure. Taken together, this study defines the acute transcriptional response of CFs to exercise and disease and reveals a cardioprotective mechanism that is lost in disease.

Authors

Janet K. Lighthouse, Ryan M. Burke, Lissette S. Velasquez, Ronald A. Dirkx Jr., Alessandro Aiezza II, Christine S. Moravec, Jeffrey D. Alexis, Alex Rosenberg, Eric M. Small

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 Total
Citations: 1 2 3 4 7 7 2 26
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Citations to this article (26)

Title and authors Publication Year
Mitigation of Doxorubicin Cardiotoxicity With Synergistic miRNA Combinations Identified Using Combinatorial Genetics en masse (CombiGEM).
Higashikuni Y, Platt C, Hastings MH, Chen WCW, Guerra JRB, Tokuyama T, Torizal FG, Liu W, Obana T, Bayer AL, Whipple H, Kuznetsov A, Yeri A, Turissini C, Kitchen RR, Shibayama K, Matsumura T, Takeda N, Uosaki H, Asnani AH, Lu TK, Rosenzweig A
JACC. CardioOncology 2025
Chromatin remodelling drives immune cell-fibroblast communication in heart failure.
Alexanian M, Padmanabhan A, Nishino T, Travers JG, Ye L, Pelonero A, Lee CY, Sadagopan N, Huang Y, Auclair K, Zhu A, An Y, Ekstrand CA, Martinez C, Teran BG, Flanigan WR, Kim CK, Lumbao-Conradson K, Gardner Z, Li L, Costa MW, Jain R, Charo I, Combes AJ, Haldar SM, Pollard KS, Vagnozzi RJ, McKinsey TA, Przytycki PF, Srivastava D
Nature 2024
GEPREP: A comprehensive data atlas of RNA-seq-based gene expression profiles of exercise responses
Sun L, Luan J, Wang J, Li X, Zhang W, Ji X, Liu L, Wang R, Xu B
Journal of Sport and Health Science 2024
Nuclear translocation of mitochondrial dehydrogenases as an adaptive cardioprotective mechanism.
Srivastava S, Gajwani P, Jousma J, Miyamoto H, Kwon Y, Jana A, Toth PT, Yan G, Ong SG, Rehman J
Nature Communications 2023
p53 Regulates the Extent of Fibroblast Proliferation and Fibrosis in Left Ventricle Pressure Overload.
Liu X, Burke RM, Lighthouse JK, Baker CD, Dirkx RA Jr, Kang B, Chakraborty Y, Mickelsen DM, Twardowski JJ, Mello SS, Ashton JM, Small EM
Circulation research 2023
Intrinsic and Extrinsic Contributors to the Cardiac Benefits of Exercise
Hastings MH, Castro C, Freeman R, Abdul Kadir A, Lerchenmüller C, Li H, Rhee J, Roh JD, Roh K, Singh AP, Wu C, Xia P, Zhou Q, Xiao J, Rosenzweig A
JACC: Basic to Translational Science 2023
MBNL1 drives dynamic transitions between fibroblasts and myofibroblasts in cardiac wound healing
D Bugg, L Bailey, R Bretherton, K Beach, I Reichardt, K Robeson, A Reese, J Gunaje, G Flint, C DeForest, A Stempien-Otero, J Davis
Cell Stem Cell 2022
Effect of Physical Activity/Exercise on Oxidative Stress and Inflammation in Muscle and Vascular Aging
El Assar M, Álvarez-Bustos A, Sosa P, Angulo J, Rodríguez-Mañas L
International journal of molecular sciences 2022
Transcriptional regulation of cardiac fibroblast phenotypic plasticity
Burgos Villar KN, Liu X, Small EM
Current Opinion in Physiology 2022
Beyond cardiomyocytes: Cellular diversity in the heart's response to exercise
Trager LE, Lyons M, Kuznetsov A, Sheffield C, Roh K, Freeman R, Rhee J, Guseh JS, Li H, Rosenzweig A
Journal of Sport and Health Science 2022
Nuclear Receptors in Myocardial and Cerebral Ischemia—Mechanisms of Action and Therapeutic Strategies
J Rzemieniec, L Castiglioni, P Gelosa, M Muluhie, B Mercuriali, L Sironi
International journal of molecular sciences 2021
Prevention of Fibrosis and Pathological Cardiac Remodeling by Salinomycin
RM Burke, RA Dirkx, P Quijada, JK Lighthouse, A Mohan, M OBrien, W Wojciechowski, CF Woeller, RP Phipps, JD Alexis, JM Ashton, EM Small
Circulation research 2021
Recent Advances in Single-Cell Profiling and Multispecific Therapeutics: Paving the Way for a New Era of Precision Medicine Targeting Cardiac Fibroblasts
SY Shi, X Luo, TM Yamawaki, CM Li, B Ason, MB Furtado
Current Cardiology Reports 2021
Targets identified from exercised heart: killing multiple birds with one stone
H Wang, Y Xie, L Guan, K Elkin, J Xiao
npj Regenerative Medicine 2021
Matters of the heart: Cellular sex differences
CJ Walker, ME Schroeder, BA Aguado, KS Anseth, LA Leinwand
Journal of Molecular and Cellular Cardiology 2021
A Prevascularized Polyurethane‐Reinforced Fibrin Patch Improves Regenerative Remodeling in a Rat Right Ventricle Replacement Model
ZW Tao, DK Jarrell, A Robinson, EM CosgriffHernandez, JG Jacot
Advanced Healthcare Materials 2021
Harnessing the cardiovascular benefits of exercise: Are Nrf2 activators useful?
Fasipe B, Li S, Laher I
2021
Regulators of cardiac fibroblast cell state
R Bretherton, D Bugg, E Olszewski, J Davis
Matrix biology : journal of the International Society for Matrix Biology 2020
Zinc at the crossroads of exercise and proteostasis
JD Hernández-Camacho, C Vicente-García, DS Parsons, I Navas-Enamorado
Redox Biology 2020
Fibroblast contributions to ischemic cardiac remodeling
RM Burke, KN Villar, EM Small
Cellular Signalling 2020
Pim1 maintains telomere length in mouse cardiomyocytes by inhibiting TGFβ signalling
DE Ebeid, FG Khalafalla, KM Broughton, MM Monsanto, CY Esquer, V Sacchi, N Hariharan, KI Korski, M Moshref, J Emathinger, CT Cottage, PJ Quijada, JH Nguyen, R Alvarez, M Völkers, MH Konstandin, BJ Wang, F Firouzi, JM Navarrete, NA Gude, MJ Goumans, MA Sussman
Cardiovascular Research 2020
Engineering Myocardium for Heart Regeneration—Advancements, Considerations, and Future Directions
DK Jarrell, EJ Vanderslice, MC VeDepo, JG Jacot
Frontiers in Cardiovascular Medicine 2020
Uncoupling protein 2‐mediated metabolic adaptations define cardiac cell function in the heart during transition from young to old age
J Kurian, AE Yuko, N Kasatkin, VO Rigaud, K Busch, D Harlamova, M Wagner, FA Recchia, H Wang, S Mohsin, SR Houser, M Khan
Stem Cells Translational Medicine 2020
Cardiac Fibroblast Diversity.
Tallquist MD
Annual Review of Physiology 2020
Protective transcriptional mechanisms in cardiomyocytes and cardiac fibroblasts
CS Brand, JK Lighthouse, MA Trembley
Journal of Molecular and Cellular Cardiology 2019
A Novel Role of Cyclic Nucleotide Phosphodiesterase 10A in Pathological Cardiac Remodeling and Dysfunction
S Chen, Y Zhang, JK Lighthouse, DM Mickelsen, J Wu, P Yao, EM Small, C Yan
Circulation 2019

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