De novo mutations in the X-linked TFE3 gene cause intellectual disability with pigmentary mosaicism and storage disorder-like features
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Published:2020-05-14
Issue:12
Volume:57
Page:808-819
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ISSN:0022-2593
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Container-title:Journal of Medical Genetics
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language:en
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Short-container-title:J Med Genet
Author:
Lehalle DaphnéORCID, Vabres Pierre, Sorlin Arthur, Bierhals Tatjana, Avila Magali, Carmignac Virginie, Chevarin Martin, Torti Erin, Abe Yuichi, Bartolomaeus Tobias, Clayton-Smith Jill, Cogné BenjaminORCID, Cusco IvonORCID, Duplomb Laurence, De Bont Eveline, Duffourd Yannis, Duijkers Floor, Elpeleg Orly, Fattal Aviva, Geneviève David, Guillen Sacoto Maria J, Guimier Anne, Harris David J, Hempel Maja, Isidor Bertrand, Jouan Thibaud, Kuentz PaulORCID, Koshimizu Eriko, Lichtenbelt Klaske, Loik Ramey Valerie, Maik Miriam, Miyakate Sakoto, Murakami Yoshiko, Pasquier Laurent, Pedro Helio, Simone LaurieORCID, Sondergaard-Schatz Krista, St-Onge Judith, Thevenon Julien, Valenzuela Irene, Abou Jamra Rami, van Gassen Koen, van Haelst Mieke M, van Koningsbruggen Silvana, Verdura EdgardORCID, Whelan Habela Christa, Zacher Pia, Rivière Jean-Baptiste, Thauvin-Robinet Christel, Betschinger Joerg, Faivre LaurenceORCID
Abstract
IntroductionPigmentary mosaicism (PM) manifests by pigmentation anomalies along Blaschko’s lines and represents a clue toward the molecular diagnosis of syndromic intellectual disability (ID). Together with new insights on the role for lysosomal signalling in embryonic stem cell differentiation, mutations in the X-linked transcription factor 3 (TFE3) have recently been reported in five patients. Functional analysis suggested these mutations to result in ectopic nuclear gain of functions.Materials and methodsSubsequent data sharing allowed the clustering of de novo TFE3 variants identified by exome sequencing on DNA extracted from leucocytes in patients referred for syndromic ID with or without PM.ResultsWe describe the detailed clinical and molecular data of 17 individuals harbouring a de novo TFE3 variant, including the patients that initially allowed reporting TFE3 as a new disease-causing gene. The 12 females and 5 males presented with pigmentation anomalies on Blaschko’s lines, severe ID, epilepsy, storage disorder-like features, growth retardation and recognisable facial dysmorphism. The variant was at a mosaic state in at least two male patients. All variants were missense except one splice variant. Eleven of the 13 variants were localised in exon 4, 2 in exon 3, and 3 were recurrent variants.ConclusionThis series further delineates the specific storage disorder-like phenotype with PM ascribed to de novo TFE3 mutation in exons 3 and 4. It confirms the identification of a novel X-linked human condition associated with mosaicism and dysregulation within the mechanistic target of rapamycin (mTOR) pathway, as well as a link between lysosomal signalling and human development.
Funder
Programme Hospitalier de Recherche Clinique (PHRC) National 2010 URDCat program Ministerio de Economia, Industria y Competividad Agence Nationale de Recherche
Subject
Genetics(clinical),Genetics
Cited by
12 articles.
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