Literature DB >> 25772936

Mutations in the endothelin receptor type A cause mandibulofacial dysostosis with alopecia.

Christopher T Gordon1, K Nicole Weaver2, Roseli Maria Zechi-Ceide3, Erik C Madsen4, Andre L P Tavares5, Myriam Oufadem6, Yukiko Kurihara7, Igor Adameyko8, Arnaud Picard9, Sylvain Breton10, Sébastien Pierrot11, Martin Biosse-Duplan12, Norine Voisin6, Cécile Masson6, Christine Bole-Feysot6, Patrick Nitschké6, Marie-Ange Delrue13, Didier Lacombe13, Maria Leine Guion-Almeida3, Priscila Padilha Moura3, Daniela Gamba Garib14, Arnold Munnich15, Patrik Ernfors8, Robert B Hufnagel2, Robert J Hopkin2, Hiroki Kurihara7, Howard M Saal2, David D Weaver16, Nicholas Katsanis4, Stanislas Lyonnet15, Christelle Golzio4, David E Clouthier5, Jeanne Amiel17.   

Abstract

The endothelin receptor type A (EDNRA) signaling pathway is essential for the establishment of mandibular identity during development of the first pharyngeal arch. We report four unrelated individuals with the syndrome mandibulofacial dysostosis with alopecia (MFDA) who have de novo missense variants in EDNRA. Three of the four individuals have the same substitution, p.Tyr129Phe. Tyr129 is known to determine the selective affinity of EDNRA for endothelin 1 (EDN1), its major physiological ligand, and the p.Tyr129Phe variant increases the affinity of the receptor for EDN3, its non-preferred ligand, by two orders of magnitude. The fourth individual has a somatic mosaic substitution, p.Glu303Lys, and was previously described as having Johnson-McMillin syndrome. The zygomatic arch of individuals with MFDA resembles that of mice in which EDNRA is ectopically activated in the maxillary prominence, resulting in a maxillary to mandibular transformation, suggesting that the p.Tyr129Phe variant causes an EDNRA gain of function in the developing upper jaw. Our in vitro and in vivo assays suggested complex, context-dependent effects of the EDNRA variants on downstream signaling. Our findings highlight the importance of finely tuned regulation of EDNRA signaling during human craniofacial development and suggest that modification of endothelin receptor-ligand specificity was a key step in the evolution of vertebrate jaws.
Copyright © 2015 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 25772936      PMCID: PMC4385188          DOI: 10.1016/j.ajhg.2015.01.015

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  43 in total

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Authors:  Lisa J Cushman; Wilfredo Torres-Martinez; David D Weaver
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