Literature DB >> 31422817

Rare De Novo Missense Variants in RNA Helicase DDX6 Cause Intellectual Disability and Dysmorphic Features and Lead to P-Body Defects and RNA Dysregulation.

Chris Balak1, Marianne Benard2, Elise Schaefer3, Sumaiya Iqbal4, Keri Ramsey5, Michèle Ernoult-Lange2, Francesca Mattioli6, Lorida Llaci5, Véronique Geoffroy7, Maité Courel2, Marcus Naymik5, Kristine K Bachman8, Rolph Pfundt9, Patrick Rump10, Johanna Ter Beest9, Ingrid M Wentzensen11, Kristin G Monaghan11, Kirsty McWalter11, Ryan Richholt12, Antony Le Béchec13, Wayne Jepsen5, Matt De Both5, Newell Belnap14, Anne Boland15, Ignazio S Piras5, Jean-François Deleuze15, Szabolcs Szelinger5, Hélène Dollfus3, Jamel Chelly16, Jean Muller17, Arthur Campbell4, Dennis Lal18, Sampathkumar Rangasamy5, Jean-Louis Mandel19, Vinodh Narayanan5, Matt Huentelman5, Dominique Weil2, Amélie Piton20.   

Abstract

The human RNA helicase DDX6 is an essential component of membrane-less organelles called processing bodies (PBs). PBs are involved in mRNA metabolic processes including translational repression via coordinated storage of mRNAs. Previous studies in human cell lines have implicated altered DDX6 in molecular and cellular dysfunction, but clinical consequences and pathogenesis in humans have yet to be described. Here, we report the identification of five rare de novo missense variants in DDX6 in probands presenting with intellectual disability, developmental delay, and similar dysmorphic features including telecanthus, epicanthus, arched eyebrows, and low-set ears. All five missense variants (p.His372Arg, p.Arg373Gln, p.Cys390Arg, p.Thr391Ile, and p.Thr391Pro) are located in two conserved motifs of the RecA-2 domain of DDX6 involved in RNA binding, helicase activity, and protein-partner binding. We use functional studies to demonstrate that the first variants identified (p.Arg373Gln and p.Cys390Arg) cause significant defects in PB assembly in primary fibroblast and model human cell lines. These variants' interactions with several protein partners were also disrupted in immunoprecipitation assays. Further investigation via complementation assays included the additional variants p.Thr391Ile and p.Thr391Pro, both of which, similarly to p.Arg373Gln and p.Cys390Arg, demonstrated significant defects in P-body assembly. Complementing these molecular findings, modeling of the variants on solved protein structures showed distinct spatial clustering near known protein binding regions. Collectively, our clinical and molecular data describe a neurodevelopmental syndrome associated with pathogenic missense variants in DDX6. Additionally, we suggest DDX6 join the DExD/H-box genes DDX3X and DHX30 in an emerging class of neurodevelopmental disorders involving RNA helicases.
Copyright © 2019 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  DDX6; DEAD-box; DExD/H-box; RNA helicase; RecA domain; helicase; intellectual disability; mRNA metabolism; missense variants; neurodevelopmental disorder; p-bodies; processing bodies

Mesh:

Substances:

Year:  2019        PMID: 31422817      PMCID: PMC6731366          DOI: 10.1016/j.ajhg.2019.07.010

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


  61 in total

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