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PMID: 21295280 已发表 · ppublish 英语

FAF1, a gene that is disrupted in cleft palate and has conserved function in zebrafish.

American journal of human genetics ·第 88 卷 ·第 2 期 ·2011-03-29

Ghassibe-Sabbagh Michella, Desmyter Laurence, Langenberg Tobias, Claes Filip, Boute Odile, Bayet Bénédicte, Pellerin Philippe, Hermans Karlien, Backx Liesbeth, Mansilla Maria Adela, Imoehl Sandra, Nowak Stefanie, Ludwig Kerstin U, Baluardo Carlotta, Ferrian Melissa, Mossey Peter A, Noethen Markus, Dewerchin Mieke, François Geneviève, Revencu Nicole, Vanwijck Romain, Hecht Jacqueline, Mangold Elisabeth, Murray Jeffrey, Rubini Michele, Vermeesch Joris R, Poirel Hélène A, Carmeliet Peter, Vikkula Miikka

摘要

Cranial neural crest (CNC) is a multipotent migratory cell population that gives rise to most of the craniofacial bones. An intricate network mediates CNC formation, epithelial-mesenchymal transition, migration along distinct paths, and differentiation. Errors in these processes lead to craniofacial abnormalities, including cleft lip and palate. Clefts are the most common congenital craniofacial defects. Patients have complications with feeding, speech, hearing, and dental and psychological development. Affected by both genetic predisposition and environmental factors, the complex etiology of clefts remains largely unknown. Here we show that Fas-associated factor-1 (FAF1) is disrupted and that its expression is decreased in a Pierre Robin family with an inherited translocation. Furthermore, the locus is strongly associated with cleft palate and shows an increased relative risk. Expression studies show that faf1 is highly expressed in zebrafish cartilages during embryogenesis. Knockdown of zebrafish faf1 leads to pharyngeal cartilage defects and jaw abnormality as a result of a failure of CNC to differentiate into and express cartilage-specific markers, such as sox9a and col2a1. Administration of faf1 mRNA rescues this phenotype. Our findings therefore identify FAF1 as a regulator of CNC differentiation and show that it predisposes humans to cleft palate and is necessary for lower jaw development in zebrafish.

文献信息
期刊
American journal of human genetics
期刊简称
Am J Hum Genet
发表日期
2011-03-29
收录日期
2011-02-11
更新日期
2016-10-25
语言
英语
国家/地区
United States
NLM ID
0370475
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