Abstract
AbstractCleft lip and cleft palate are among the most common congenital anomalies and are the result of incomplete fusion of embryonic craniofacial processes or palatal shelves, respectively. We know that genetics play a large role in these anomalies but the list of known causal genes is far from complete. As part of a larger sequencing effort of patients with micrognathia and cleft palate we identified a candidate variant intransforming growth factor beta receptor 2(TGFBR2) which is rare, changing a highly conserved amino acid, and predicted to be pathogenic by a number of metrics. The family history and population genetics would suggest this specific variant would be incompletely penetrant, but this gene has been convincingly implicated in craniofacial development. In order to test the hypothesis this might be a causal variant, we used genome editing to create the orthologous variant in a new mouse model. Surprisingly,Tgfbr2V387Mmice did not exhibit craniofacial anomalies or have reduced survival suggesting this is, in fact, not a causal variant for cleft palate/ micrognathia. The discrepancy between in silico predictions and mouse phenotypes highlights the complexity of translating human genetic findings to mouse models. We expect these findings will aid in interpretation of future variants seen inTGFBR2from ongoing sequencing of patients with congenital craniofacial anomalies.
Publisher
Cold Spring Harbor Laboratory
Reference43 articles.
1. Adzhubei, I. , Jordan, D.M. , and Sunyaev, S.R. (2013). Predicting functional effect of human missense mutations using PolyPhen-2. Curr Protoc Hum Genet Chapter 7, Unit7 20.
2. Beames, T.G. , and Lipinski, R.J. (2020). Gene-environment interactions: aligning birth defects research with complex etiology. Development 147.
3. Behringer, R. (2014). Manipulating the mouse embryo: a laboratory manual, Fourth edition. edn (Cold Spring Harbor, New York: Cold Spring Harbor Laboratory Press).
4. Genetics of cortisone-induced cleft palate in the mouse-embryonic and maternal effects;Genetics,1976
5. TGF-β Signaling and itsFunctionalSignificance inRegulating theFate ofCranialNeuralCrestCells