Intrinsic myocardial defects underlie an Rbfox-deficient zebrafish model of hypoplastic left heart syndrome.
Mengmeng HuangAlexander A AkerbergXiaoran ZhangHaejin YoonShakchhi JoshiCelia HallinanChristopher T NguyenWilliam T PuMarcia C HaigisC Geoffrey BurnsCaroline E BurnsPublished in: Nature communications (2022)
Hypoplastic left heart syndrome (HLHS) is characterized by underdevelopment of left sided structures including the ventricle, valves, and aorta. Prevailing paradigm suggests that HLHS is a multigenic disease of co-occurring phenotypes. Here, we report that zebrafish lacking two orthologs of the RNA binding protein RBFOX2, a gene linked to HLHS in humans, display cardiovascular defects overlapping those in HLHS patients including ventricular, valve, and aortic deficiencies. In contrast to current models, we demonstrate that these structural deficits arise secondary to impaired pump function as these phenotypes are rescued when Rbfox is specifically expressed in the myocardium. Mechanistically, we find diminished expression and alternative splicing of sarcomere and mitochondrial components that compromise sarcomere assembly and mitochondrial respiration, respectively. Injection of human RBFOX2 mRNA restores cardiovascular development in rbfox mutant zebrafish, while HLHS-linked RBFOX2 variants fail to rescue. This work supports an emerging paradigm for HLHS pathogenesis that centers on myocardial intrinsic defects.
Keyphrases
- aortic valve
- binding protein
- left ventricular
- heart failure
- end stage renal disease
- pulmonary artery
- oxidative stress
- mitral valve
- ejection fraction
- endothelial cells
- chronic kidney disease
- poor prognosis
- newly diagnosed
- traumatic brain injury
- atrial fibrillation
- transcatheter aortic valve replacement
- case report
- magnetic resonance
- peritoneal dialysis
- pulmonary hypertension
- aortic valve replacement
- computed tomography
- high resolution
- magnetic resonance imaging
- dna methylation
- mass spectrometry
- pulmonary arterial hypertension
- transcription factor
- long non coding rna
- aortic dissection
- coronary artery disease
- ultrasound guided