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Loss of Gata5 in mice leads to bicuspid aortic valve
Brigitte Laforest, Gregor Andelfinger, Mona Nemer
Brigitte Laforest, Gregor Andelfinger, Mona Nemer
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Research Article Cardiology

Loss of Gata5 in mice leads to bicuspid aortic valve

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Abstract

Bicuspid aortic valve (BAV), the leading congenital heart disease, occurs in 1%–2% of the population. Genetic studies suggest that BAV is an autosomal-dominant disease with reduced penetrance. However, only 1 gene, NOTCH1, has been linked to cases of BAV. Here, we show that targeted deletion of Gata5 in mice leads to hypoplastic hearts and partially penetrant BAV formation. Endocardial cell–specific inactivation of Gata5 led to BAV, similar to that observed in Gata5–/– mice. In all cases, the observed BAVs resulted from fusion of the right-coronary and noncoronary leaflets, the subtype associated with the more severe valve dysfunction in humans. Neither endocardial cell proliferation nor cushion formation was altered in the absence of Gata5. Rather, defective endocardial cell differentiation, resulting from the deregulation of several components of the Notch pathway and other important endocardial cell regulators, may be the underlying mechanism of disease. The results unravel a critical cell-autonomous role for endocardial Gata5 in aortic valve formation and identify GATA5 as a potential gene responsible for congenital heart disease in humans. Mice with mutated Gata5 alleles represent unique models to dissect the mechanisms underlying degenerative aortic valve disease and to develop much-needed preventive and therapeutic interventions.

Authors

Brigitte Laforest, Gregor Andelfinger, Mona Nemer

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Figure 5

Modulation of gene expression in Gata5–/– embryos.

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Modulation of gene expression in Gata5–/– embryos.
   
(A–E) Q-PCR showi...
(A–E) Q-PCR showing normal levels of Gata4 and Gata6 (A and B), and altered expression of Tbx20, Bmp4, and Mef2c (C–E) in the hearts of Gata5–/– embryos at E12.5 (n = 6–8 per group). (F–J) Q-PCR of members of the Notch pathway (n = 6–8 per group). Expression of Notch1 and Hey2 remained stable (F and J), Rbpjκ transcripts were significantly upregulated (G), and Jag1 and Hey1 transcripts were downregulated (H and I) in Gata5–/– embryos at E12.5. (K–O) Q-PCR showing altered expression of several endothelial markers in Gata5–/– embryos at E12.5 (n = 6–8 per group). (P–W) Transverse sections of E10.5 control and Gata5–/– embryos stained for NICD (P and Q), Gata4 (R and S), Jag1 (T and U), and Tbx20 (V and W). Note the decreased NICD, Jag1, and Tbx20 expression in Gata5–/– embryos (Q, U, and W). Scale bars: 40 μm. *P < 0.05 vs. Gata5+/+.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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