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Citations to this article

Transcription factor ETV1 is essential for rapid conduction in the heart
Akshay Shekhar, … , Glenn I. Fishman, David S. Park
Akshay Shekhar, … , Glenn I. Fishman, David S. Park
Published October 24, 2016
Citation Information: J Clin Invest. 2016;126(12):4444-4459. https://doi.org/10.1172/JCI87968.
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Research Article Cardiology Development Article has an altmetric score of 6

Transcription factor ETV1 is essential for rapid conduction in the heart

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Abstract

Rapid impulse propagation in the heart is a defining property of pectinated atrial myocardium (PAM) and the ventricular conduction system (VCS) and is essential for maintaining normal cardiac rhythm and optimal cardiac output. Conduction defects in these tissues produce a disproportionate burden of arrhythmic disease and are major predictors of mortality in heart failure patients. Despite the clinical importance, little is known about the gene regulatory network that dictates the fast conduction phenotype. Here, we have used signal transduction and transcriptional profiling screens to identify a genetic pathway that converges on the NRG1-responsive transcription factor ETV1 as a critical regulator of fast conduction physiology for PAM and VCS cardiomyocytes. Etv1 was highly expressed in murine PAM and VCS cardiomyocytes, where it regulates expression of Nkx2-5, Gja5, and Scn5a, key cardiac genes required for rapid conduction. Mice deficient in Etv1 exhibited marked cardiac conduction defects coupled with developmental abnormalities of the VCS. Loss of Etv1 resulted in a complete disruption of the normal sodium current heterogeneity that exists between atrial, VCS, and ventricular myocytes. Lastly, a phenome-wide association study identified a link between ETV1 and bundle branch block and heart block in humans. Together, these results identify ETV1 as a critical factor in determining fast conduction physiology in the heart.

Authors

Akshay Shekhar, Xianming Lin, Fang-Yu Liu, Jie Zhang, Huan Mo, Lisa Bastarache, Joshua C. Denny, Nancy J. Cox, Mario Delmar, Dan M. Roden, Glenn I. Fishman, David S. Park

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2009 Total
Citations: 4 5 5 9 6 7 3 4 3 1 47
Citation information
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Citations to this article in year 2017 (3)

Title and authors Publication Year
Plakophilin-2 is required for transcription of genes that control calcium cycling and cardiac rhythm
M Cerrone, J Montnach, X Lin, YT Zhao, M Zhang, E Agullo-Pascual, A Leo-Macias, FJ Alvarado, I Dolgalev, TV Karathanos, K Malkani, CJ van Opbergen, JJ van Bavel, HQ Yang, C Vasquez, D Tester, S Fowler, F Liang, E Rothenberg, A Heguy, GE Morley, WA Coetzee, NA Trayanova, MJ Ackerman, TA van Veen, HH Valdivia, M Delmar
Nature Communications 2017
Phenotypically silent Cre recombination within the postnatal ventricular conduction system
S Bhattacharyya, M Bhakta, NV Munshi, XH Wehrens
PloS one 2017
Development and Function of the Cardiac Conduction System in Health and Disease.
Park DS, Fishman GI
Journal of Cardiovascular Development and Disease 2017

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ISSN: 0021-9738 (print), 1558-8238 (online)

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