Novel truncating mutations in CTNND1 cause a dominant craniofacial and cardiac syndrome

Author:

Alharatani Reham,Ververi Athina,Beleza-Meireles Ana,Ji Weizhen,Mis Emily,Patterson Quinten T.,Griffin John N.,Bhujel Nabina,Chang Caitlin A.,Dixit Abhijit,Konstantino Monica,Healy Christopher,Hannan Sumayyah,Neo Natsuko,Cash Alex,Li Dong,Bhoj Elizabeth,Zackai Elaine H.,Cleaver Ruth,Baralle Diana,McEntagart Meriel,Newbury-Ecob Ruth,Scott Richard,Hurst Jane A.,Billie Au Ping Yee,Hosey Marie Therese,Khokha Mustafa,Marciano Denise K.,Lakhani Saquib A.,Liu Karen J.ORCID

Abstract

Abstract:CTNND1 encodes the p120-catenin (p120) protein, which has a wide range of functions, including the maintenance of cell-cell junctions, regulation of the epithelial-mesenchymal transition and transcriptional signaling. Due to advances in next generation sequencing, CTNND1 has been implicated in human diseases including cleft palate and blepharocheilodontic syndrome (BCD) albeit only recently. In this study, we identify eight novel protein-truncating variants, six de novo, in thirteen participants presenting with craniofacial dysmorphisms including cleft palate and hypodontia, as well as congenital cardiac anomalies, limb dysmorphologies and neurodevelopmental disorders. Using conditional deletions in mice as well as CRISPR/Cas9 approaches to target CTNND1 in Xenopus, we identified a subset of phenotypes that can be linked to p120-catenin in epithelial integrity and turnover, and additional phenotypes that suggest mesenchymal roles of CTNND1. We propose that CTNND1 variants have a wider developmental role than previously described, and that variations in this gene underlie not only cleft palate and BCD but may be expanded to a broader velocardiofacial-like syndrome.

Publisher

Cold Spring Harbor Laboratory

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Genome-wide Enrichment of De Novo Coding Mutations in Orofacial Cleft Trios;The American Journal of Human Genetics;2020-07

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