Trio-based GWAS identifies novel associations and subtype-specific risk factors for cleft palate

Cleft palate (CP) is one of the most common craniofacial birth defects; however, there are relatively few established genetic risk factors associated with its occurrence despite high heritability. Historically, CP has been studied as a single phenotype, although it manifests across a spectrum of def...

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Veröffentlicht in:HGG advances 2023-10, Vol.4 (4), p.100234, Article 100234
Hauptverfasser: Robinson, Kelsey, Mosley, Trenell J., Rivera-González, Kenneth S., Jabbarpour, Christopher R., Curtis, Sarah W., Adeyemo, Wasiu Lanre, Beaty, Terri H., Butali, Azeez, Buxó, Carmen J., Cutler, David J., Epstein, Michael P., Gowans, Lord J.J., Hecht, Jacqueline T., Murray, Jeffrey C., Shaw, Gary M., Uribe, Lina Moreno, Weinberg, Seth M., Brand, Harrison, Marazita, Mary L., Lipinski, Robert J., Leslie, Elizabeth J.
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Sprache:eng
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Zusammenfassung:Cleft palate (CP) is one of the most common craniofacial birth defects; however, there are relatively few established genetic risk factors associated with its occurrence despite high heritability. Historically, CP has been studied as a single phenotype, although it manifests across a spectrum of defects involving the hard and/or soft palate. We performed a genome-wide association study using transmission disequilibrium tests of 435 case-parent trios to evaluate broad risks for any cleft palate (ACP) (n = 435), and subtype-specific risks for any cleft soft palate (CSP), (n = 259) and any cleft hard palate (CHP) (n = 125). We identified a single genome-wide significant locus at 9q33.3 (lead SNP rs7035976, p = 4.24 × 10−8) associated with CHP. One gene at this locus, angiopoietin-like 2 (ANGPTL2), plays a role in osteoblast differentiation. It is expressed both in craniofacial tissue of human embryos and developing mouse palatal shelves. We found 19 additional loci reaching suggestive significance (p 
ISSN:2666-2477
2666-2477
DOI:10.1016/j.xhgg.2023.100234