Integrating reproductive states and social cues in the control of sociosexual behaviors.
basic_science · Level V
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- Record sourced from PubMed, PMID 40398420.
- Also identified by DOI 10.1016/j.cell.2025.04.035.
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Abstract
Female sociosexual behaviors, essential for survival and reproduction, are modulated by ovarian hormones and triggered in the context of appropriate social cues. Here, we identify primary estrous-sensitive Cacna1h-expressing medial prefrontal cortex (mPFC<sup>Cacna1h+</sup>) neurons that integrate hormonal states with recognition of potential mates to orchestrate these complex cognitive behaviors. Bidirectional manipulation of mPFC<sup>Cacna1h+</sup> neurons shifts opposite-sex-directed social behaviors between estrus and diestrus females via anterior hypothalamic outputs. In males, these neurons serve opposite functions compared with estrus females. Miniscope imaging reveals mixed representation of self-estrous states and social target sex in distinct mPFC<sup>Cacna1h+</sup> subpopulations, with biased encoding of opposite-sex cues in estrus females and males. Mechanistically, ovarian-hormone-induced Cacna1h upregulation enhances T-type rebound excitation after oxytocin inhibition, driving estrus-specific activity changes and the sexually dimorphic function of mPFC<sup>Cacna1h+</sup> neurons. These findings uncover a prefrontal circuit that integrates internal hormonal states and target-sex information to exert sexually bivalent top-down control over adaptive social behaviors.
Medical subject headings
- Cues
- Social Behavior
- Sexual Behavior, Animal
- Reproduction