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AGAP1-associated endolysosomal trafficking abnormalities link gene-environment interactions in neurodevelopmental disorders.
Lewis, Sara A; Bakhtiari, Somayeh; Forstrom, Jacob; Bayat, Allan; Bilan, Frédéric; Le Guyader, Gwenaël; Alkhunaizi, Ebba; Vernon, Hilary; Padilla-Lopez, Sergio R; Kruer, Michael C.
Affiliation
  • Lewis SA; Pediatric Movement Disorders Program, Barrow Neurological Institute, Phoenix Children's Hospital, Phoenix, AZ 85016, USA.
  • Bakhtiari S; Departments of Child Health, Neurology, Genetics and Cellular & Molecular Medicine, University of Arizona College of Medicine Phoenix, Phoenix, AZ 85004, USA.
  • Forstrom J; Pediatric Movement Disorders Program, Barrow Neurological Institute, Phoenix Children's Hospital, Phoenix, AZ 85016, USA.
  • Bayat A; Departments of Child Health, Neurology, Genetics and Cellular & Molecular Medicine, University of Arizona College of Medicine Phoenix, Phoenix, AZ 85004, USA.
  • Bilan F; Pediatric Movement Disorders Program, Barrow Neurological Institute, Phoenix Children's Hospital, Phoenix, AZ 85016, USA.
  • Le Guyader G; Departments of Child Health, Neurology, Genetics and Cellular & Molecular Medicine, University of Arizona College of Medicine Phoenix, Phoenix, AZ 85004, USA.
  • Alkhunaizi E; Institute for Regional Health Services, University of Southern Denmark, 5230 Odense, Denmark.
  • Vernon H; Department of Epilepsy Genetics and Personalized Medicine, Danish Epilepsy Center, 4293 Dianalund, Denmark.
  • Padilla-Lopez SR; Service de Génétique, CHU de Poitiers, 86000 Poitiers, France.
  • Kruer MC; Laboratoire de Neurosciences Experimentales et Cliniques, INSERM U1084, 86000 Poitiers, France.
Dis Model Mech ; 16(9)2023 09 01.
Article in En | MEDLINE | ID: mdl-37470098
ABSTRACT
AGAP1 is an Arf1 GTPase-activating protein that regulates endolysosomal trafficking. Damaging variants have been linked to cerebral palsy and autism. We report three new cases in which individuals had microdeletion variants in AGAP1. The affected individuals had intellectual disability (3/3), autism (3/3), dystonia with axial hypotonia (1/3), abnormalities of brain maturation (1/3), growth impairment (2/3) and facial dysmorphism (2/3). We investigated mechanisms potentially underlying AGAP1 variant-mediated neurodevelopmental impairments using the Drosophila ortholog CenG1a. We discovered reduced axon terminal size, increased neuronal endosome abundance and elevated autophagy compared to those in controls. Given potential incomplete penetrance, we assessed gene-environment interactions. We found basal elevation in the phosphorylation of the integrated stress-response protein eIF2α (or eIF2A) and inability to further increase eIF2α phosphorylation with subsequent cytotoxic stressors. CenG1a-mutant flies had increased lethality from exposure to environmental insults. We propose a model wherein disruption of AGAP1 function impairs endolysosomal trafficking, chronically activating the integrated stress response and leaving AGAP1-deficient cells susceptible to a variety of second-hit cytotoxic stressors. This model may have broader applicability beyond AGAP1 in instances where both genetic and environmental insults co-occur in individuals with neurodevelopmental disorders.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Gene-Environment Interaction / Intellectual Disability Type of study: Risk_factors_studies Limits: Humans Language: En Journal: Dis Model Mech Year: 2023 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Gene-Environment Interaction / Intellectual Disability Type of study: Risk_factors_studies Limits: Humans Language: En Journal: Dis Model Mech Year: 2023 Document type: Article