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Adaptive disinhibitory gating by VIP interneurons permits associative learning.
Krabbe, Sabine; Paradiso, Enrica; d'Aquin, Simon; Bitterman, Yael; Courtin, Julien; Xu, Chun; Yonehara, Keisuke; Markovic, Milica; Müller, Christian; Eichlisberger, Tobias; Gründemann, Jan; Ferraguti, Francesco; Lüthi, Andreas.
Afiliación
  • Krabbe S; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • Paradiso E; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • d'Aquin S; Department of Pharmacology, Medical University of Innsbruck, Innsbruck, Austria.
  • Bitterman Y; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • Courtin J; University of Basel, Basel, Switzerland.
  • Xu C; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • Yonehara K; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • Markovic M; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • Müller C; Institute of Neuroscience, Chinese Academy of Sciences, Shanghai, China.
  • Eichlisberger T; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • Gründemann J; Danish Research Institute of Translational Neuroscience - DANDRITE, Department of Biomedicine, Nordic-EMBL Partnership for Molecular Medicine, Aarhus University, Aarhus, Denmark.
  • Ferraguti F; Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
  • Lüthi A; University of Basel, Basel, Switzerland.
Nat Neurosci ; 22(11): 1834-1843, 2019 11.
Article en En | MEDLINE | ID: mdl-31636447
Learning drives behavioral adaptations necessary for survival. While plasticity of excitatory projection neurons during associative learning has been extensively studied, little is known about the contributions of local interneurons. Using fear conditioning as a model for associative learning, we found that behaviorally relevant, salient stimuli cause learning by tapping into a local microcircuit consisting of precisely connected subtypes of inhibitory interneurons. By employing deep-brain calcium imaging and optogenetics, we demonstrate that vasoactive intestinal peptide (VIP)-expressing interneurons in the basolateral amygdala are activated by aversive events and provide a mandatory disinhibitory signal for associative learning. Notably, VIP interneuron responses during learning are strongly modulated by expectations. Our findings indicate that VIP interneurons are a central component of a dynamic circuit motif that mediates adaptive disinhibitory gating to specifically learn about unexpected, salient events, thereby ensuring appropriate behavioral adaptations.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Aprendizaje por Asociación / Péptido Intestinal Vasoactivo / Filtrado Sensorial / Interneuronas / Inhibición Neural Tipo de estudio: Prognostic_studies / Risk_factors_studies Límite: Animals Idioma: En Revista: Nat Neurosci Asunto de la revista: NEUROLOGIA Año: 2019 Tipo del documento: Article País de afiliación: Suiza

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Aprendizaje por Asociación / Péptido Intestinal Vasoactivo / Filtrado Sensorial / Interneuronas / Inhibición Neural Tipo de estudio: Prognostic_studies / Risk_factors_studies Límite: Animals Idioma: En Revista: Nat Neurosci Asunto de la revista: NEUROLOGIA Año: 2019 Tipo del documento: Article País de afiliación: Suiza