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Deleterious de novo variants of X‐linked ZC4H2 in females cause a variable phenotype with neurogenic arthrogryposis multiplex congenita
Authors:Suzanna GM Frints  Friederike Hennig  Roberto Colombo  Sebastien Jacquemont  Paulien Terhal  Holly H Zimmerman  David Hunt  Bryce A Mendelsohn  Ulrike Kordaß  Richard Webster  Margje Sinnema  Omar Abdul‐Rahman  Vanessa Suckow  Alberto Fernndez‐Jan  Kees van Roozendaal  Servi JC Stevens  Merryn VE Macville  Salwan Al‐Nasiry  Koen van Gassen  Norbert Utzig  Suzanne M Koudijs  Lesley McGregor  Saskia M Maas  Diana Baralle  Abhijit Dixit  Peter Wieacker  Marcus Lee  Arthur S Lee  Elizabeth C Engle  Gunnar Houge  Gyri A Gradek  Andrew GL Douglas  Cheryl Longman  Shelagh Joss  Danita Velasco  Raoul C Hennekam  Hiromi Hirata  Vera M Kalscheuer
Institution:Suzanna G.M. Frints,Friederike Hennig,Roberto Colombo,Sebastien Jacquemont,Paulien Terhal,Holly H. Zimmerman,David Hunt,Bryce A. Mendelsohn,Ulrike Kordaß,Richard Webster,Margje Sinnema,Omar Abdul‐Rahman,Vanessa Suckow,Alberto Fernández‐Jaén,Kees van Roozendaal,Servi J.C. Stevens,Merryn V.E. Macville,Salwan Al‐Nasiry,Koen van Gassen,Norbert Utzig,Suzanne M. Koudijs,Lesley McGregor,Saskia M. Maas,Diana Baralle,Abhijit Dixit,Peter Wieacker,Marcus Lee,Arthur S. Lee,Elizabeth C. Engle,Gunnar Houge,Gyri A. Gradek,Andrew G.L. Douglas,Cheryl Longman,Shelagh Joss,Danita Velasco,Raoul C. Hennekam,Hiromi Hirata,Vera M. Kalscheuer
Abstract:Pathogenic variants in the X‐linked gene ZC4H2, which encodes a zinc‐finger protein, cause an infrequently described syndromic form of arthrogryposis multiplex congenita (AMC) with central and peripheral nervous system involvement. We present genetic and detailed phenotypic information on 23 newly identified families and simplex cases that include 19 affected females from 18 families and 14 affected males from nine families. Of note, the 15 females with deleterious de novo ZC4H2 variants presented with phenotypes ranging from mild to severe, and their clinical features overlapped with those seen in affected males. By contrast, of the nine carrier females with inherited ZC4H2 missense variants that were deleterious in affected male relatives, four were symptomatic. We also compared clinical phenotypes with previously published cases of both sexes and provide an overview on 48 males and 57 females from 42 families. The spectrum of ZC4H2 defects comprises novel and recurrent mostly inherited missense variants in affected males, and de novo splicing, frameshift, nonsense, and partial ZC4H2 deletions in affected females. Pathogenicity of two newly identified missense variants was further supported by studies in zebrafish. We propose ZC4H2 as a good candidate for early genetic testing of males and females with a clinical suspicion of fetal hypo‐/akinesia and/or (neurogenic) AMC.
Keywords:fetal hypo‐/akinesia  club foot/‐feet  complicated spastic paraplegia/ spasticity  Xq11  2 microdeletion  ZC4H2  ZC4H2‐Associated Rare Disorders (ZARD)
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