Literature DB >> 30982611

Pathogenic Variants in GPC4 Cause Keipert Syndrome.

David J Amor1, Sarah E M Stephenson1, Mirna Mustapha2, Martin A Mensah3, Charlotte W Ockeloen4, Wei Shern Lee1, Rick M Tankard5, Dean G Phelan1, Marwan Shinawi6, Arjan P M de Brouwer7, Rolph Pfundt4, Cari Dowling8, Tomi L Toler6, V Reid Sutton9, Emanuele Agolini10, Martina Rinelli10, Rossella Capolino11, Diego Martinelli12, Giuseppe Zampino13, Miroslav Dumić14, William Reardon15, Charles Shaw-Smith16, Richard J Leventer17, Martin B Delatycki1, Tjitske Kleefstra7, Stefan Mundlos3, Geert Mortier18, Melanie Bahlo5, Nicola J Allen8, Paul J Lockhart19.   

Abstract

Glypicans are a family of cell-surface heparan sulfate proteoglycans that regulate growth-factor signaling during development and are thought to play a role in the regulation of morphogenesis. Whole-exome sequencing of the Australian family that defined Keipert syndrome (nasodigitoacoustic syndrome) identified a hemizygous truncating variant in the gene encoding glypican 4 (GPC4). This variant, located in the final exon of GPC4, results in premature termination of the protein 51 amino acid residues prior to the stop codon, and in concomitant loss of functionally important N-linked glycosylation (Asn514) and glycosylphosphatidylinositol (GPI) anchor (Ser529) sites. We subsequently identified seven affected males from five additional kindreds with novel and predicted pathogenic variants in GPC4. Segregation analysis and X-inactivation studies in carrier females provided supportive evidence that the GPC4 variants caused the condition. Furthermore, functional studies of recombinant protein suggested that the truncated proteins p.Gln506∗ and p.Glu496∗ were less stable than the wild type. Clinical features of Keipert syndrome included a prominent forehead, a flat midface, hypertelorism, a broad nose, downturned corners of mouth, and digital abnormalities, whereas cognitive impairment and deafness were variable features. Studies of Gpc4 knockout mice showed evidence of the two primary features of Keipert syndrome: craniofacial abnormalities and digital abnormalities. Phylogenetic analysis demonstrated that GPC4 is most closely related to GPC6, which is associated with a bone dysplasia that has a phenotypic overlap with Keipert syndrome. Overall, we have shown that pathogenic variants in GPC4 cause a loss of function that results in Keipert syndrome, making GPC4 the third human glypican to be linked to a genetic syndrome. Crown
Copyright © 2019. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  GPC4; Keipert syndrome; Nasodigitoacoustic syndrome; glypicans

Mesh:

Substances:

Year:  2019        PMID: 30982611      PMCID: PMC6507040          DOI: 10.1016/j.ajhg.2019.02.026

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


  38 in total

1.  A patient with Keipert syndrome and isolated fibrous dysplasia of the sphenoid sinus.

Authors:  Murat Derbent; Yunus Emre Bikmaz; Muhtesem Agildere
Journal:  Am J Med Genet A       Date:  2011-05-12       Impact factor: 2.802

Review 2.  The role of glypicans in Hedgehog signaling.

Authors:  Jorge Filmus; Mariana Capurro
Journal:  Matrix Biol       Date:  2014-01-08       Impact factor: 11.583

3.  WNT Signaling Perturbations Underlie the Genetic Heterogeneity of Robinow Syndrome.

Authors:  Janson J White; Juliana F Mazzeu; Zeynep Coban-Akdemir; Yavuz Bayram; Vahid Bahrambeigi; Alexander Hoischen; Bregje W M van Bon; Alper Gezdirici; Elif Yilmaz Gulec; Francis Ramond; Renaud Touraine; Julien Thevenon; Marwan Shinawi; Erin Beaver; Jennifer Heeley; Julie Hoover-Fong; Ceren D Durmaz; Halil Gurhan Karabulut; Ebru Marzioglu-Ozdemir; Atilla Cayir; Mehmet B Duz; Mehmet Seven; Susan Price; Barbara Merfort Ferreira; Angela M Vianna-Morgante; Sian Ellard; Andrew Parrish; Karen Stals; Josue Flores-Daboub; Shalini N Jhangiani; Richard A Gibbs; Han G Brunner; V Reid Sutton; James R Lupski; Claudia M B Carvalho
Journal:  Am J Hum Genet       Date:  2017-12-21       Impact factor: 11.025

Review 4.  Additional case of Keipert syndrome and review of the literature.

Authors:  S M Cappon; M M Khalifa
Journal:  Med Sci Monit       Date:  2000 Jul-Aug

5.  Expression pattern of glypican-4 suggests multiple roles during mouse development.

Authors:  Patricia Ybot-Gonzalez; Andrew J Copp; Nicholas D E Greene
Journal:  Dev Dyn       Date:  2005-07       Impact factor: 3.780

6.  Mutational analysis of the GPC3/GPC4 glypican gene cluster on Xq26 in patients with Simpson-Golabi-Behmel syndrome: identification of loss-of-function mutations in the GPC3 gene.

Authors:  M Veugelers; B D Cat; S Y Muyldermans; G Reekmans; N Delande; S Frints; E Legius; J P Fryns; C Schrander-Stumpel; B Weidle; N Magdalena; G David
Journal:  Hum Mol Genet       Date:  2000-05-22       Impact factor: 6.150

Review 7.  Phenotypic spectrum of Simpson-Golabi-Behmel syndrome in a series of 42 cases with a mutation in GPC3 and review of the literature.

Authors:  Edouard Cottereau; Isabelle Mortemousque; Marie-Pierre Moizard; Lydie Bürglen; Didier Lacombe; Brigitte Gilbert-Dussardier; Sabine Sigaudy; Odile Boute; Albert David; Laurence Faivre; Jeanne Amiel; Robert Robertson; Fabiana Viana Ramos; Eric Bieth; Sylvie Odent; Bénédicte Demeer; Michéle Mathieu; Dominique Gaillard; Lionel Van Maldergem; Geneviéve Baujat; Isabelle Maystadt; Delphine Héron; Alain Verloes; Nicole Philip; Valérie Cormier-Daire; Marie-Françoise Frouté; Lucile Pinson; Patricia Blanchet; Pierre Sarda; Marjolaine Willems; Adeline Jacquinet; Ilham Ratbi; Jenneke Van Den Ende; Marylin Lackmy-Port Lis; Alice Goldenberg; Dominique Bonneau; Sylvie Rossignol; Annick Toutain
Journal:  Am J Med Genet C Semin Med Genet       Date:  2013-04-18       Impact factor: 3.908

8.  Astrocyte glypicans 4 and 6 promote formation of excitatory synapses via GluA1 AMPA receptors.

Authors:  Nicola J Allen; Mariko L Bennett; Lynette C Foo; Gordon X Wang; Chandrani Chakraborty; Stephen J Smith; Ben A Barres
Journal:  Nature       Date:  2012-05-27       Impact factor: 49.962

9.  Comparison of expression profiles in ovarian epithelium in vivo and ovarian cancer identifies novel candidate genes involved in disease pathogenesis.

Authors:  Catherine Emmanuel; Natalie Gava; Catherine Kennedy; Rosemary L Balleine; Raghwa Sharma; Gerard Wain; Alison Brand; Russell Hogg; Dariush Etemadmoghadam; Joshy George; Michael J Birrer; Christine L Clarke; Georgia Chenevix-Trench; David D L Bowtell; Paul R Harnett; Anna deFazio
Journal:  PLoS One       Date:  2011-03-15       Impact factor: 3.240

Review 10.  Glypicans.

Authors:  Jorge Filmus; Mariana Capurro; Jonathan Rast
Journal:  Genome Biol       Date:  2008-05-22       Impact factor: 13.583

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  5 in total

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Journal:  Am J Physiol Cell Physiol       Date:  2022-03-23       Impact factor: 5.282

Review 2.  WNT Signaling and Bone: Lessons From Skeletal Dysplasias and Disorders.

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Review 5.  Syndecan receptors: pericellular regulators in development and inflammatory disease.

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Journal:  Open Biol       Date:  2021-02-10       Impact factor: 6.411

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