Shared molecular programs govern the formation of heart and head during mammalian embryogenesis. Development of both structures is disrupted in human chromosomal microdeletion of 22q11.2 (del22q11), which causes DiGeorge syndrome (DGS) and velo-cardio-facial syndrome (VCFS). Here, we have identified a genetic pathway involving the Six1/Eya1 transcription complex that regulates cardiovascular and craniofacial development. We demonstrate that murine mutation of both Six1 and Eya1 recapitulated most features of human del22q11 syndromes, including craniofacial, cardiac outflow tract, and aortic arch malformations. The mutant phenotypes were attributable in part to a reduction of fibroblast growth factor 8 (Fgf8), which was shown to be a direct downstream effector of Six1 and Eya1. Furthermore, we showed that Six1 and Eya1 genetically interacted with Fgf8 and the critical del22q11 gene T-box transcription factor 1 (Tbx1) in mice. Together, these findings reveal a Tbx1-Six1/Eya1-Fgf8 genetic pathway that is crucial for mammalian cardiocraniofacial morphogenesis and provide insights into the pathogenesis of human del22q11 syndromes.
Chaoshe Guo, Ye Sun, Bin Zhou, Rosalyn M. Adam, XiaoKun Li, William T. Pu, Bernice E. Morrow, Anne Moon, Xue Li
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The FGF metabolic axis
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Frontiers of Medicine | 2019 |
HDAC1-mediated repression of the retinoic acid-responsive gene ripply3 promotes second heart field development
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Pax9 is required for cardiovascular development and interacts with Tbx1 in the pharyngeal endoderm to control 4th pharyngeal arch artery morphogenesis
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Development (Cambridge, England) | 2019 |
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PLoS genetics | 2019 |
Crucial and Overlapping Roles of Six1 and Six2 in Craniofacial Development
Z Liu, C Li, J Xu, Y Lan, H Liu, X Li, P Maire, X Wang, R Jiang |
Journal of dental research | 2019 |
A single-cell transcriptional roadmap for cardiopharyngeal fate diversification
W Wang, X Niu, T Stuart, E Jullian, WM Mauck, RG Kelly, R Satija, L Christiaen |
Nature Cell Biology | 2019 |