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Updated: Jul 11, 2025

Observational Fear as a Model of Affective Empathy in Mice
Published on: November 22, 2024
Transcriptionally defined amygdala subpopulations play distinct roles in innate social behaviors
Julieta E Lischinsky1, Luping Yin2, Chenxi Shi2,3
1Neuroscience Institute, New York University School of Medicine, New York, NY, USA. julieta.lischinsky@nyulangone.org.
Abstract:
Social behaviors are innate and supported by dedicated neural circuits, but the molecular identities of these circuits and how they are established developmentally and shaped by experience remain unclear. Here we show that medial amygdala (MeA) cells originating from two embryonically parcellated developmental lineages have distinct response patterns and functions in social behavior in male mice. MeA cells expressing the transcription factor Foxp2 (MeAFoxp2) are specialized for processing male conspecific cues and are essential for adult inter-male aggression. By contrast, MeA cells derived from the Dbx1 lineage (MeADbx1) respond broadly to social cues, respond strongly during ejaculation and are not essential for male aggression. Furthermore, MeAFoxp2 and MeADbx1 cells show differential anatomical and functional connectivity. Altogether, our results suggest a developmentally hardwired aggression circuit at the MeA level and a lineage-based circuit organization by which a cell's embryonic transcription factor profile determines its social information representation and behavioral relevance during adulthood.
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