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  3. Stress induces oxytocin-Gαi-dependent remodeling of astrocytes to shape neuronal response in the amygdala.
 

Stress induces oxytocin-Gαi-dependent remodeling of astrocytes to shape neuronal response in the amygdala.

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BORIS DOI
10.48620/93524
Publisher DOI
10.1038/s41467-025-68114-4
PubMed ID
41462022
Description
Anticipated reactions to stressful situations are vital for the survival and well-being of organisms, and abnormal reactions results in stress-related disorders. The neuropeptide oxytocin is a key modulator ensuring well-adapted stress responses. Oxytocin acts on both neurons and astrocytes, but the molecular and cellular mechanisms mediating stress response remain poorly understood. Here, we focus on the amygdala, a crucial hub that integrates and processes sensory information through oxytocin-dependent mechanisms. Using an acute stress paradigm in mice, genetic and pharmacological manipulations combined with proteomic, morphological, electrophysiological and behavioral approaches, we reveal that oxytocinergic modulation of the freezing response to stress is mediated by transient Gαi-dependent retraction of astrocytic processes, followed by enhanced neuronal sensitivity to extracellular potassium in the amygdala. Our findings elucidate a pivotal role for astrocytes morphology-dependent modulation of brain circuits that is required for proper anticipated behavioral response to stressful situations.
Date of Publication
2025-12-29
Publication Type
Article
Language(s)
en
Contributor(s)
Baudon, Angel
Grelot, Valentin
Wang, Kai-Yi
Althammer, Ferdinand
Denis, Clémence
Riché-Piotaix, Pierre
Ali, Azmal Syed
Yan, Yudong
Clinic of Neurology
Department for BioMedical Research, Forschungsgruppe Neurologie
Castillo Díaz, Fernando
Piacentini, Francesca
Clauss Creusot, Etienne
Hovhannisyan, Volodya
Schubert, Tim
Kleinwaechter, Annabel C
Eisemann, Eva M
Muhammad, Jabir Aliyu
Helen, Jemima
Lakomy, Tom
Krabichler, Quirin
Breton, Rachel
Andry, Virginie
Carrillo-de Sauvage, Maria-Angeles
Demais, Valérie
Cès, Aurélia
Franke, Felix
Schommer, Franziska
Kremer, Mélanie
Di Benedetto, Barbara
Goumon, Yannick
Schaaf, Christian P
Grinevich, Valery
Rouach, Nathalie
Darbon, Pascal
Neumann, Inga D
Adamantidis, Antoine
Clinic of Neurology
Department for BioMedical Research, Forschungsgruppe Neurologie
Busnelli, Marta
Benhaim, Lucile
Krijgsveld, Jeroen
Pfrieger, Frank W
Charlet, Alexandre
Additional Credits
Clinic of Neurology
Department for BioMedical Research, Forschungsgruppe Neurologie
Microscopy Imaging Center (MIC)
Series
Nature Communications
Publisher
Nature Research
ISSN
2041-1723
Access(Rights)
open.access
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