iPSC-derived cardiomyocytes reveal abnormal TGF-β signalling in left ventricular non-compaction cardiomyopathy.
Kazuki KodoSang-Ging OngFereshteh JahanbaniVittavat TermglinchanKeiichi HironoKolsoum InanlooRahatlooAntje D EbertPraveen ShuklaOscar J AbilezJared M ChurkoIoannis KarakikesGwanghyun JungFukiko IchidaSean M WuMichael P SnyderDaniel BernsteinJoseph C WuPublished in: Nature cell biology (2016)
Left ventricular non-compaction (LVNC) is the third most prevalent cardiomyopathy in children and its pathogenesis has been associated with the developmental defect of the embryonic myocardium. We show that patient-specific induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) generated from LVNC patients carrying a mutation in the cardiac transcription factor TBX20 recapitulate a key aspect of the pathological phenotype at the single-cell level and this was associated with perturbed transforming growth factor beta (TGF-β) signalling. LVNC iPSC-CMs have decreased proliferative capacity due to abnormal activation of TGF-β signalling. TBX20 regulates the expression of TGF-β signalling modifiers including one known to be a genetic cause of LVNC, PRDM16, and genome editing of PRDM16 caused proliferation defects in iPSC-CMs. Inhibition of TGF-β signalling and genome correction of the TBX20 mutation were sufficient to reverse the disease phenotype. Our study demonstrates that iPSC-CMs are a useful tool for the exploration of pathological mechanisms underlying poorly understood cardiomyopathies including LVNC.
Keyphrases
- transforming growth factor
- left ventricular
- epithelial mesenchymal transition
- genome editing
- heart failure
- crispr cas
- single cell
- induced pluripotent stem cells
- transcription factor
- ejection fraction
- end stage renal disease
- genome wide
- high glucose
- aortic stenosis
- acute myocardial infarction
- signaling pathway
- newly diagnosed
- hypertrophic cardiomyopathy
- young adults
- chronic kidney disease
- rna seq
- poor prognosis
- peritoneal dialysis
- left atrial
- diabetic rats
- transcatheter aortic valve replacement
- high throughput
- binding protein
- atrial fibrillation
- copy number
- long non coding rna