| Literature DB >> 29637653 |
Marie-Laure Vuillaume1,2, Marie-Pierre Moizard1,2, Sylvie Rossignol3,4, Edouard Cottereau1, Sandrine Vonwill1,2, Jean-Luc Alessandri5, Tiffany Busa6, Estelle Colin7, Marion Gérard8, Fabienne Giuliano9, Laetitia Lambert10, Mathilde Lefevre11, Udhaya Kotecha12, Sheela Nampoothiri13, Irène Netchine3, Martine Raynaud1,2, Frédéric Brioude3, Annick Toutain1,2.
Abstract
Simpson-Golabi-Behmel syndrome (SGBS) is an X-linked multiple congenital anomalies and overgrowth syndrome caused by a defect in the glypican-3 gene (GPC3). Until now, GPC3 mutations have been reported in isolated cases or small series and the global genotypic spectrum of these mutations has never been delineated. In this study, we review the 57 previously described GPC3 mutations and significantly expand this mutational spectrum with the description of 29 novel mutations. Compiling our data and those of the literature, we provide an overview of 86 distinct GPC3 mutations identified in 120 unrelated families, ranging from single nucleotide variations to complex genomic rearrangements and dispersed throughout the entire coding region of GPC3. The vast majority of them are deletions or truncating mutations (frameshift, nonsense mutations) predicted to result in a loss-of-function. Missense mutations are rare and the two which were functionally characterized, impaired GPC3 function by preventing GPC3 cleavage and cell surface addressing respectively. This report by describing for the first time the wide mutational spectrum of GPC3 could help clinicians and geneticists in interpreting GPC3 variants identified incidentally by high-throughput sequencing technologies and also reinforces the need for functional validation of non-truncating mutations (missense, in frame mutations, duplications).Entities:
Keywords: GPC3; Simpson-Golabi-Behmel syndrome; X-linked disorder; mutations; overgrowth
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Year: 2018 PMID: 29637653 DOI: 10.1002/humu.23428
Source DB: PubMed Journal: Hum Mutat ISSN: 1059-7794 Impact factor: 4.878