Sustained expression of stable CUGexp RNA in a DM1 mouse model caused progressive cardiac enlargement, contractile dysfunction, conduction delay, and myocardial fibrosis.
Does prolonged expression of stable CUGexp RNA drive progressive cardiac pathology in a DM1 mouse model?
Transgenic DM1 mouse model (CUG960) and control mice (MHCrtTA)
Doxycycline-induced heart-specific expression of a stable, interrupted 960-CUG repeat RNA (CUGexp RNA)
Hemizygous MHCrtTA mice given doxycycline chow
Cardiac disease progression (cardiac enlargement, contractile dysfunction, conduction delay, myocardial fibrosis, survival) and reversibilitysurrogate
Prolonged expression of stable CUGexp RNA drives progressive cardiac pathology and reduces reversibility in a DM1 mouse model, revealing a mechanism of disease progression independent of somatic expansion.
Myotonic Dystrophy Type 1 (DM1) is caused by an expanded CTG repeat in the DMPK gene, resulting in mutant transcripts that form expanded CUG (CUGexp) RNA foci and sequester muscleblind-like (MBNL) RNA-binding proteins. DM1 is multisystemic with progressive worsening of disease manifestations in affected tissues. Disease progression is attributed to somatic expansion of the CTG repeats with age, resulting in production of CUGexp RNA with enhanced intrinsic toxicity due to increased MBNL sequestration. To determine the degree to which cardiac disease progression can occur independently of repeat expansion, we used a transgenic DM1 mouse model with inducible heart-specific expression of a stable, interrupted 960-CUG repeat RNA. Sustained CUGexp RNA expression caused progressive cardiac enlargement, contractile dysfunction, conduction delay, myocardial fibrosis, and reduced survival, while MBNL-dependent splicing defects remained static, consistent with the stable repeat length. We also determined the degree of reversibility after different periods of CUGexp RNA expression by shutting off the repeat-containing transgene. Suppression of CUGexp RNA expression rescued cardiac abnormalities, but reversibility declined with longer exposure to the toxic RNA. These findings demonstrate that prolonged expression of stable CUGexp RNA drives progressive cardiac pathology, revealing a mechanism of disease progression in DM1 in addition to somatic expansion.
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Rong-Chi Hu
Mohammadreza Tabary
Xander H.T. Wehrens
JCI Insight
Baylor College of Medicine
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Hu et al. (Thu,) conducted a other in Myotonic Dystrophy Type 1 (DM1). CUGexp RNA expression (induced by doxycycline) vs. MHCrtTA +dox control mice was evaluated on Cardiac structural and functional parameters, and conduction delays. Sustained expression of stable CUGexp RNA in a DM1 mouse model caused progressive cardiac enlargement, contractile dysfunction, conduction delay, and myocardial fibrosis.
www.synapsesocial.com/papers/69bf8692f665edcd009e8f64 — DOI: https://doi.org/10.1172/jci.insight.204278
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