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A novel source of arterial valve cells linked to bicuspid aortic valve without raphe in mice

eLife · 2018 · Vol. 7
Lorriane EleyAhlam AlqahtaniDonal MacGroganRachel V. RichardsonL. MurphyAlejandro Salguero-JiménezMarcos Sintes Rodriguez San PedroShindi TiurmaLauren McCutcheonAdam GilmoreJosé Luís de la PompaBill ChaudhryDeborah J. Henderson

Abstract

Abnormalities of the arterial valve leaflets, predominantly bicuspid aortic valve, are the commonest congenital malformations. Although many studies have investigated the development of the arterial valves, it has been assumed that, as with the atrioventricular valves, endocardial to mesenchymal transition (EndMT) is the predominant mechanism. We show that arterial is distinctly different from atrioventricular valve formation. Whilst the four septal valve leaflets are dominated by NCC and EndMT-derived cells, the intercalated leaflets differentiate directly from <i>Tnnt2-Cre</i>+/Isl1+ progenitors in the outflow wall, via a Notch-Jag dependent mechanism. Further, when this novel group of progenitors are disrupted, development of the intercalated leaflets is disrupted, resulting in leaflet dysplasia and bicuspid valves without raphe, most commonly affecting the aortic valve. This study thus overturns the dogma that heart valves are formed principally by EndMT, identifies a new source of valve interstitial cells, and provides a novel mechanism for causation of bicuspid aortic valves without raphe.

Congenital heart defects researchCardiac Valve Diseases and TreatmentsCongenital Heart Disease StudiesBicuspid aortic valveBicuspid valveRapheCardiologyInternal medicineAortic valveMedicineAnatomy

MeSH terms

Jagged-1 ProteinBicuspid Aortic Valve DiseaseAnimalsAortic ValveCell DifferentiationEmbryo, MammalianEpithelial CellsHeart Valve DiseasesHumansMice, TransgenicStem CellsTranscription FactorsBiomarkersGene ExpressionCell Lineage

Funding

  • British Heart Foundation
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