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Targeting the histone demethylase LSD1 prevents cardiomyopathy in a mouse model of laminopathy
Anne-Claire Guénantin, … , Nicolas Vignier, Michel Pucéat
Anne-Claire Guénantin, … , Nicolas Vignier, Michel Pucéat
Published January 4, 2021
Citation Information: J Clin Invest. 2021;131(1):e136488. https://doi.org/10.1172/JCI136488.
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Research Article Cardiology Development

Targeting the histone demethylase LSD1 prevents cardiomyopathy in a mouse model of laminopathy

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Abstract

LMNA mutations in patients are responsible for a dilated cardiomyopathy. Molecular mechanisms underlying the origin and development of the pathology are unknown. Herein, using mouse pluripotent embryonic stem cells (ESCs) and a mouse model both harboring the p.H222P Lmna mutation, we found early defects in cardiac differentiation of mutated ESCs and dilatation of mutated embryonic hearts at E13.5, pointing to a developmental origin of the disease. Using mouse ESCs, we demonstrated that cardiac differentiation of LmnaH222P/+ was impaired at the mesodermal stage. Expression of Mesp1, a mesodermal cardiogenic gene involved in epithelial-to-mesenchymal transition of epiblast cells, as well as Snai1 and Twist expression, was decreased in LmnaH222P/+ cells compared with WT cells in the course of differentiation. In turn, cardiomyocyte differentiation was impaired. ChIP assay of H3K4me1 in differentiating cells revealed a specific decrease of this histone mark on regulatory regions of Mesp1 and Twist in LmnaH222P/+ cells. Downregulation or inhibition of LSD1 that specifically demethylated H3K4me1 rescued the epigenetic landscape of mesodermal LmnaH222P/+ cells and in turn contraction of cardiomyocytes. Inhibition of LSD1 in pregnant mice or neonatal mice prevented cardiomyopathy in E13.5 LmnaH222P/H222P offspring and adults, respectively. Thus, LSD1 appeared to be a therapeutic target to prevent or cure dilated cardiomyopathy associated with a laminopathy.

Authors

Anne-Claire Guénantin, Imen Jebeniani, Julia Leschik, Erwan Watrin, Gisèle Bonne, Nicolas Vignier, Michel Pucéat

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Figure 4

LSD1 downregulation rescues epigenetic, transcriptional, and functional defects in LmnaH222P/+ EBs.

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LSD1 downregulation rescues epigenetic, transcriptional, and functional ...
(A) LSD1 was downregulated in ESCs by transfection of a siRNA. LSD1 expression was monitored by immunostaining (left panel) or Western blot (right panel) with an anti-LSD1 antibody. (B) ChIP-qPCR assay using an anti-H3K4me1 antibody. Both Twist and Mesp1 regulatory regions were interrogated using chromatin extracted from WT or LmnaH222P/+ EBs generated from LSD-siRNA transfected ESCs. Results are expressed as a percentage of input from 3 separate experiments. Multiple 1-tailed Student’s t tests corrected for multiple comparisons using the Holm-Šídák method were used to compare each experimental condition. (C) ChIP-qPCR assay using an anti-LSD1 antibody. Both Twist and Mesp1 regulatory regions were interrogated using chromatin extracted from WT or LmnaH222P/+ EBs. The experiment was repeated twice with similar results (light versus dark gray bar).

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

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