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Citations to this article

5′RNA-Seq identifies Fhl1 as a genetic modifier in cardiomyopathy
Danos C. Christodoulou, … , Christine E. Seidman, J.G. Seidman
Danos C. Christodoulou, … , Christine E. Seidman, J.G. Seidman
Published February 10, 2014
Citation Information: J Clin Invest. 2014;124(3):1364-1370. https://doi.org/10.1172/JCI70108.
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Technical Advance Cardiology Article has an altmetric score of 8

5′RNA-Seq identifies Fhl1 as a genetic modifier in cardiomyopathy

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Abstract

The transcriptome is subject to multiple changes during pathogenesis, including the use of alternate 5′ start-sites that can affect transcription levels and output. Current RNA sequencing techniques can assess mRNA levels, but do not robustly detect changes in 5′ start-site use. Here, we developed a transcriptome sequencing strategy that detects genome-wide changes in start-site usage (5′RNA-Seq) and applied this methodology to identify regulatory events that occur in hypertrophic cardiomyopathy (HCM). Compared with transcripts from WT mice, 92 genes had altered start-site usage in a mouse model of HCM, including four-and-a-half LIM domains protein 1 (Fhl1). HCM-induced altered transcriptional regulation of Fhl1 resulted in robust myocyte expression of a distinct protein isoform, a response that was conserved in humans with genetic or acquired cardiomyopathies. Genetic ablation of Fhl1 in HCM mice was deleterious, which suggests that Fhl1 transcriptional changes provide salutary effects on stressed myocytes in this disease. Because Fhl1 is a chromosome X–encoded gene, stress-induced changes in its transcription may contribute to gender differences in the clinical severity of HCM. Our findings indicate that 5′RNA-Seq has the potential to identify genome-wide changes in 5′ start-site usage that are associated with pathogenic phenotypes.

Authors

Danos C. Christodoulou, Hiroko Wakimoto, Kenji Onoue, Seda Eminaga, Joshua M. Gorham, Steve R. DePalma, Daniel S. Herman, Polakit Teekakirikul, David A. Conner, David M. McKean, Andrea A. Domenighetti, Anton Aboukhalil, Stephen Chang, Gyan Srivastava, Barbara McDonough, Philip L. De Jager, Ju Chen, Martha L. Bulyk, Jochen D. Muehlschlegel, Christine E. Seidman, J.G. Seidman

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 Total
Citations: 2 3 3 4 6 2 5 1 6 3 4 1 40
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Citations to this article (40)

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Direct Reprogramming of Non-limb Fibroblasts to Cells with Properties of Limb Progenitors
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Developmental Cell 2024
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Unlocking the secrets of Cardiac development and function: the critical role of FHL2.
Jiang T, Zeng Q, Wang J
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Efficient in vivo genome editing prevents hypertrophic cardiomyopathy in mice
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Nature Medicine 2023
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Stern JA, Rivas VN, Kaplan JL, Ueda Y, Oldach MS, Ontiveros ES, Kooiker KB, van Dijk SJ, Harris SP
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Defects in the Proteome and Metabolome in Human Hypertrophic Cardiomyopathy
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