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Expanding the Mutational Landscape and Clinical Phenotype of CHD2-Related Encephalopathy

  • Angela Clara-Hwang
  • , Stefani Stefani
  • , Tracy Lau
  • , Marcello Scala
  • , Busra Aynekin
  • , Pia Bernardo
  • , Francesca Madia
  • , Sophia Bakhtadze
  • , Rauan Kaiyrzhanov
  • , Reza Maroofian
  • , Federico Zara
  • , Varunvenkat M. Srinivasan
  • , Vykuntaraju Gowda
  • , Ulviyya Guliyeva
  • , Alexandra Montavont
  • , Anne Lise Poulat
  • , Ayten Güleç
  • , Colette Berger
  • , Dorothee M. Ville
  • , Julitta De Bellescize
  • Sara Cabet, Antje Wonneberger, Alexander Schulz, Agusti Rodriguez-Palmero, Nicolas Chatron, Gaetan Lesca, Hüseyin Per, Himanshu Goel, Janis Brown, Tanja Frey, Katharina Steindl, Anita Rauch, Mariasavina Severino, Henry Houlden, Paola Nicolaides, Pasquale Striano, Stephanie Efthymiou
  • University College London
  • The Francis Crick Institute
  • Cyprus Paediatric Neurology Institute
  • University of Genoa
  • IRCCS Istituto Giannina Gaslini - Genova
  • Santobono-Pausilipon Hospital
  • Tbilisi State Medical University
  • Indira Gandhi Institute of Child Health
  • MediClub Hospital
  • University Hospital of Lyon
  • Erciyes University
  • Hospices civils de Lyon
  • Universite Claude Bernard Lyon 1
  • Friedrich Schiller University Jena
  • MVZ Mitteldeutscher Praxisverbund Humangenetik GmbH
  • Generalitat de Catalunya
  • Hunter Health
  • University of Newcastle
  • Hunter New England Health
  • Institute of Medical Genetics
  • University of Zurich
  • St. George's University of London

Research output: Contribution to journalArticlepeer-review

Abstract

ObjectivesTo present a case series of novel CHD2 variants in patients presenting with genetic epileptic and developmental encephalopathy.BackgroundCHD2 gene encodes an ATP-dependent enzyme, chromodomain helicase DNA-binding protein 2, involved in chromatin remodeling. Pathogenic variants in CHD2 are linked to early-onset conditions such as developmental and epileptic encephalopathy, drug-resistant epilepsies, and neurodevelopmental disorders. Approximately 225 diagnosed patients from 28 countries exhibit various allelic variants in CHD2, including small intragenic deletions/insertions and missense, nonsense, and splice site variants.ResultsWe present the molecular and clinical characteristics of 17 unreported individuals from 17 families with novel pathogenic or likely pathogenic variants in CHD2. All individuals presented with severe global developmental delay, childhood-onset myoclonic epilepsy, and additional neuropsychiatric features, such as behavioral including autism, ADHD, and hyperactivity. Additional findings include abnormal reflexes, hypotonia and hypertonia, motor impairment, gastrointestinal problems, and kyphoscoliosis. Neuroimaging features included hippocampal signal alterations (4/10), with additional volume loss in 2 cases, inferior vermis hypoplasia (7/10), mild cerebellar atrophy (4/10), and cerebral atrophy (1/10).DiscussionOur study broadens the geographic scope of CHD2-related phenotypes, providing valuable insights into the prevalence and clinical characteristics of this genetic disorder in previously underrepresented populations.

Original languageEnglish
Article numbere200168
JournalNeurology: Genetics
Volume10
Issue number4
DOIs
Publication statusPublished - 11 Jul 2024
Externally publishedYes

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