The complex genetics of hypoplastic left heart syndrome.
Xiaoqin LiuHisato YagiShazina SaeedAbha S BaisGeorge C GabrielZhaohan ChenKevin A PetersonYou LiMolly C SchwartzWilliam T ReynoldsManush SaydmohammedBrian GibbsYijen WuWilliam DevineBishwanath ChatterjeeNikolai T KlenaDennis KostkaKaren L de Mesy BentleyMadhavi K GanapathirajuPhillip DexheimerLinda LeatherburyOmar KhalifaAnchit BhagatMaliha ZahidWilliam PuSimon WatkinsPaul GrossfeldStephen A MurrayGeorge A PorterMichael TsangLisa J MartinD Woodrow BensonBruce J AronowCecelia W LoPublished in: Nature genetics (2017)
Congenital heart disease (CHD) affects up to 1% of live births. Although a genetic etiology is indicated by an increased recurrence risk, sporadic occurrence suggests that CHD genetics is complex. Here, we show that hypoplastic left heart syndrome (HLHS), a severe CHD, is multigenic and genetically heterogeneous. Using mouse forward genetics, we report what is, to our knowledge, the first isolation of HLHS mutant mice and identification of genes causing HLHS. Mutations from seven HLHS mouse lines showed multigenic enrichment in ten human chromosome regions linked to HLHS. Mutations in Sap130 and Pcdha9, genes not previously associated with CHD, were validated by CRISPR-Cas9 genome editing in mice as being digenic causes of HLHS. We also identified one subject with HLHS with SAP130 and PCDHA13 mutations. Mouse and zebrafish modeling showed that Sap130 mediates left ventricular hypoplasia, whereas Pcdha9 increases penetrance of aortic valve abnormalities, both signature HLHS defects. These findings show that HLHS can arise genetically in a combinatorial fashion, thus providing a new paradigm for the complex genetics of CHD.
Keyphrases
- crispr cas
- genome editing
- aortic valve
- congenital heart disease
- genome wide
- left ventricular
- heart failure
- aortic stenosis
- transcatheter aortic valve replacement
- transcatheter aortic valve implantation
- endothelial cells
- healthcare
- bioinformatics analysis
- high fat diet induced
- atrial fibrillation
- case report
- acute myocardial infarction
- aortic valve replacement
- gene expression
- dna methylation
- metabolic syndrome
- acute coronary syndrome
- ejection fraction
- induced pluripotent stem cells
- insulin resistance