Billets de Michelle Dawson

Billet publié sur Twitter/X le 07/11/2020 12:35

Twitter/X Publication avec DOI crossref Extrait cité dans le billet Lien intégré au billet Termes sur l’autisme

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Publication avec DOI Récupéré Publication crossref

Margaret M Cunniff, Eirene Markenscoff-Papadimitriou, Julia Ostrowski, John LR Rubenstein, Vikaas Singh Sohal (2020). Altered hippocampal-prefrontal communication during anxiety-related avoidance in mice deficient for the autism-associated gene Pogz. eLife, 9, e54835. eLife Sciences Publications, Ltd.

Date de publication
06/11/2020
Identifiant
10.7554/elife.54835
Auteurs
Margaret M Cunniff, Eirene Markenscoff-Papadimitriou, Julia Ostrowski, John LR Rubenstein, Vikaas Singh Sohal
Source
eLife
Détails
9, e54835
Type de référence
article
Éditeur
eLife Sciences Publications, Ltd
Source de métadonnées
crossref

Résumé

Many genes have been linked to autism. However, it remains unclear what long-term changes in neural circuitry result from disruptions in these genes, and how these circuit changes might contribute to abnormal behaviors. To address these questions, we studied behavior and physiology in mice heterozygous for Pogz, a high confidence autism gene. Pogz +/- mice exhibit reduced anxiety-related avoidance in the elevated plus maze (EPM). Theta-frequency communication between the ventral hippocampus (vHPC) and medial prefrontal cortex (mPFC) is known to be necessary for normal avoidance in the EPM. We found deficient theta-frequency synchronization between the vHPC and mPFC in vivo. When we examined vHPC–mPFC communication at higher resolution, vHPC input onto prefrontal GABAergic interneurons was specifically disrupted, whereas input onto pyramidal neurons remained intact. These findings illustrate how the loss of a high confidence autism gene can impair long-range communication by causing inhibitory circuit dysfunction within pathways important for specific behaviors.

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