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Fifteen years of research on oral–facial–digital syndromes: from 1 to 16 causal genes

Authors :
Bruel, Ange-Line
Franco, Brunella
Duffourd, Yannis
Thevenon, Julien
Jego, Laurence
Lopez, Estelle
Deleuze, Jean-Francois
Doummar, Diane
Giles, Rachel H
Johnson, Colin A
Huynen, Martijn A
Chevrier, Véronique
Burglen, Lydie
Morleo, Manuela
Desguerres, Isabelle
Pierquin, Geneviéève
Doray, Béèéréèéénice
Gilbert-Dussardier, Brigitte
Reversade, Bruno
Steichen-Gersdorf, Elisabeth
Baumann, Clarisse
Panigrahi, Inusha
Fargeot-Espaliat, Anne
Dieux, Anne
David, Albert
Goldenberg, Alice
Bongers, Ernie
Gaillard, Dominique
Argente, Jeséèééús
Aral, Bernard
Gigot, Nadéèééúège
St-Onge, Judith
Birnbaum, Daniel
Phadke, Shubha R
Cormier-Daire, Valéèééúèérie
Eguether, Thibaut
Pazour, Gregory J
Herranz-Péèééúèéérez, Vicente
Goldstein, Jaclyn S
Pasquier, Laurent
Loget, Philippe
Saunier, Sophie
Méèééúèéééégarbanéèééúèééééé, Andréèééúèééé
Rosnet, Olivier
Leroux, Michel R
Wallingford, John B
Blacque, Oliver E
Nachury, Maxence V
Attie-Bitach, Tania
Riviéèééúèéééééère, Jean-Baptiste
Faivre, Laurence
Thauvin-Robinet, Christel
Source :
Journal of Medical Genetics (JMG); 2017, Vol. 54 Issue: 6 p371-380, 10p
Publication Year :
2017

Abstract

Oral–facial–digital syndromes (OFDS) gather rare genetic disorders characterised by facial, oral and digital abnormalities associated with a wide range of additional features (polycystic kidney disease, cerebral malformations and several others) to delineate a growing list of OFDS subtypes. The most frequent, OFD type I, is caused by a heterozygous mutation in the OFD1gene encoding a centrosomal protein. The wide clinical heterogeneity of OFDS suggests the involvement of other ciliary genes. For 15 years, we have aimed to identify the molecular bases of OFDS. This effort has been greatly helped by the recent development of whole-exome sequencing (WES). Here, we present all our published and unpublished results for WES in 24 cases with OFDS. We identified causal variants in five new genes (C2CD3, TMEM107, INTU, KIAA0753and IFT57) and related the clinical spectrum of four genes in other ciliopathies (C5orf42, TMEM138, TMEM231and WDPCP) to OFDS. Mutations were also detected in two genes previously implicated in OFDS. Functional studies revealed the involvement of centriole elongation, transition zone and intraflagellar transport defects in OFDS, thus characterising three ciliary protein modules: the complex KIAA0753-FOPNL-OFD1, a regulator of centriole elongation; the Meckel-Gruber syndrome module, a major component of the transition zone; and the CPLANE complex necessary for IFT-A assembly. OFDS now appear to be a distinct subgroup of ciliopathies with wide heterogeneity, which makes the initial classification obsolete. A clinical classification restricted to the three frequent/well-delineated subtypes could be proposed, and for patients who do not fit one of these three main subtypes, a further classification could be based on the genotype.

Details

Language :
English
ISSN :
00222593 and 14686244
Volume :
54
Issue :
6
Database :
Supplemental Index
Journal :
Journal of Medical Genetics (JMG)
Publication Type :
Periodical
Accession number :
ejs42093103
Full Text :
https://doi.org/10.1136/jmedgenet-2016-104436