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GATAD2B-associated neurodevelopmental disorder (GAND): clinical and molecular insights into a NuRD-related disorder

  • The Undiagnosed Diseases Network
  • University of California at Los Angeles
  • University of Sydney
  • Cedars-Sinai Medical Center
  • Medical College of Wisconsin
  • Hofstra North Shore-LIJ School of Medicine
  • University of Texas Southwestern Medical Center
  • East Tennessee State University
  • Geisinger Medical Center
  • Brooke Army Medical Center
  • University of Texas Health Science Center
  • Johns Hopkins University
  • Hospital of the King's Daughters
  • Kennedy Krieger Institute
  • University of Lisbon
  • Geisinger Autism & Developmental Medicine Institute
  • Children's Minnesota
  • Children's Hospital of Wisconsin Wauwatosa
  • University of South Florida
  • Maine Medical Center
  • Joe DiMaggio Childrens Hospital
  • Royal North Shore Hospital
  • Sanford Children’s Specialty Clinic
  • University of South Dakota
  • University of Toronto
  • Nemours Children's Health System
  • Children's National Medical Center
  • Duke University
  • Cincinnati Children's Hospital Medical Center
  • University of Cincinnati
  • Manchester University NHS Foundation Trust
  • Newcastle University
  • University of Southampton
  • University Hospital Southampton NHS Foundation Trust
  • Belfast Health and Social Care Trust
  • Great Ormond Street Hospital for Children NHS Foundation Trust
  • University of Edinburgh
  • West Midlands Regional Clinical Genetics Service and Birmingham HealthPartners
  • Birmingham Women's and Children's NHS Foundation Trust
  • University of Ottawa
  • University of Miami
  • University of Pennsylvania

Research output: Contribution to journalArticlepeer-review

27 Scopus citations

Abstract

Purpose: Determination of genotypic/phenotypic features of GATAD2B-associated neurodevelopmental disorder(GAND). Methods: Fifty GAND subjects were evaluated to determine consistentgenotypic/phenotypic features. Immunoprecipitation assays utilizing in vitrotranscription–translation products were used to evaluate GATAD2B missensevariants’ ability to interact with binding partners within the nucleosomeremodeling and deacetylase (NuRD) complex. Results: Subjects had clinical findings that included macrocephaly,hypotonia, intellectual disability, neonatal feeding issues, polyhydramnios,apraxia of speech, epilepsy, and bicuspid aortic valves. Forty-one novelGATAD2B variants were identified withmultiple variant types (nonsense, truncating frameshift, splice-site variants,deletions, and missense). Seven subjects were identified with missense variantsthat localized within two conserved region domains (CR1 or CR2) of the GATAD2Bprotein. Immunoprecipitation assays revealed several of these missense variantsdisrupted GATAD2B interactions with its NuRD complex binding partners. Conclusions: A consistent GAND phenotype was caused by a range of geneticvariants in GATAD2B that includeloss-of-function and missense subtypes. Missense variants were present inconserved region domains that disrupted assembly of NuRD complex proteins.GAND’s clinical phenotype had substantial clinical overlap with other disordersassociated with the NuRD complex that involve CHD3 and CHD4, with clinicalfeatures of hypotonia, intellectual disability, cardiac defects, childhoodapraxia of speech, and macrocephaly.

Original languageEnglish
Pages (from-to)878-888
Number of pages11
JournalGenetics in Medicine
Volume22
Issue number5
DOIs
StatePublished - 1 May 2020

Keywords

  • GATAD2B; NuRD complex; apraxia of speech; chromatin remodeling;macrocephaly

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