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Circulation|December 28, 2018
The N6-Methyladenosine mRNA Methylase METTL3 Controls Cardiac Homeostasis and HypertrophyLisa E Dorn, Lior Lasman, Jing Chen, et al.Circulation Research|November 7, 2009
MicroRNA-133a protects against myocardial fibrosis and modulates electrical repolarization without affecting hypertrophy in pressure-overloaded adult heartsScot J Matkovich, Wei Wang, Yizheng Tu, et al.JACC. Basic to Translational Science|October 4, 2023
Loss of YTHDF2 Alters the Expression of m6A-Modified Myzap and Causes Adverse Cardiac RemodelingVolha A Golubeva, Lisa E Dorn, Christopher J Gilbert, et al.Nature Communications|October 4, 2018
Correcting glucose-6-phosphate dehydrogenase deficiency with a small-molecule activatorSunhee Hwang, Karen Mruk, Simin Rahighi, et al.JCI Insight|March 2, 2021
Micro-dystrophin gene therapy prevents heart failure in an improved Duchenne muscular dystrophy cardiomyopathy mouse modelZachary M Howard, Lisa E Dorn, Jeovanna Lowe, et al.Nature Communications|January 11, 2022
The m6A methyltransferase METTL3 regulates muscle maintenance and growth in miceJennifer M Petrosino, Scott A Hinger, Volha A Golubeva, et al.Circulation|February 25, 2009
Reciprocal regulation of myocardial microRNAs and messenger RNA in human cardiomyopathy and reversal of the microRNA signature by biomechanical supportScot J Matkovich, Derek J Van Booven, Keith A Youker, et al.Circulation Research|February 3, 2021
Microfibrillar-Associated Protein 4 Regulates Stress-Induced Cardiac RemodelingLisa E Dorn, William Lawrence, Jennifer M Petrosino, et al.Molecular Metabolism|September 28, 2021
Cardiac-derived TGF-β1 confers resistance to diet-induced obesity through the regulation of adipocyte size and functionJacob Z Longenecker, Jennifer M Petrosino, Colton R Martens, et al.Molecular Therapy. Methods & Clinical Development|March 6, 2023
Micro-dystrophin gene therapy demonstrates long-term cardiac efficacy in a severe Duchenne muscular dystrophy modelArden B Piepho, Jeovanna Lowe, Laurel R Cumby, et al.Pageof 3