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Disruption of Nrxn1α within excitatory forebrain circuits drives value-based dysfunction.
Alabi, Opeyemi O; Davatolhagh, M Felicia; Robinson, Mara; Fortunato, Michael P; Vargas Cifuentes, Luigim; Kable, Joseph W; Fuccillo, Marc Vincent.
Affiliation
  • Alabi OO; Department of Neuroscience, Philadelphia, United States.
  • Davatolhagh MF; Neuroscience Graduate Group, Perelman School of Medicine, Philadelphia, United States.
  • Robinson M; Department of Neuroscience, Philadelphia, United States.
  • Fortunato MP; Neuroscience Graduate Group, Perelman School of Medicine, Philadelphia, United States.
  • Vargas Cifuentes L; Department of Neuroscience, Philadelphia, United States.
  • Kable JW; Department of Neuroscience, Philadelphia, United States.
  • Fuccillo MV; Department of Neuroscience, Philadelphia, United States.
Elife ; 92020 12 04.
Article in En | MEDLINE | ID: mdl-33274715
Goal-directed behaviors are essential for normal function and significantly impaired in neuropsychiatric disorders. Despite extensive associations between genetic mutations and these disorders, the molecular contributions to goal-directed dysfunction remain unclear. We examined mice with constitutive and brain region-specific mutations in Neurexin1α, a neuropsychiatric disease-associated synaptic molecule, in value-based choice paradigms. We found Neurexin1α knockouts exhibited reduced selection of beneficial outcomes and impaired avoidance of costlier options. Reinforcement modeling suggested that this was driven by deficits in updating and representation of value. Disruption of Neurexin1α within telencephalic excitatory projection neurons, but not thalamic neurons, recapitulated choice abnormalities of global Neurexin1α knockouts. Furthermore, this selective forebrain excitatory knockout of Neurexin1α perturbed value-modulated neural signals within striatum, a central node in feedback-based reinforcement learning. By relating deficits in value-based decision-making to region-specific Nrxn1α disruption and changes in value-modulated neural activity, we reveal potential neural substrates for the pathophysiology of neuropsychiatric disease-associated cognitive dysfunction.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Calcium-Binding Proteins / Choice Behavior / Prosencephalon / Neural Cell Adhesion Molecules / Neural Pathways / Neurons Type of study: Prognostic_studies Limits: Animals Language: En Journal: Elife Year: 2020 Type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Calcium-Binding Proteins / Choice Behavior / Prosencephalon / Neural Cell Adhesion Molecules / Neural Pathways / Neurons Type of study: Prognostic_studies Limits: Animals Language: En Journal: Elife Year: 2020 Type: Article Affiliation country: United States