Estrogen-responsive neural circuits governing male and female mating behavior in mice

Curr Opin Neurobiol. 2023 Jul 6;81:102749. doi: 10.1016/j.conb.2023.102749. Online ahead of print.ABSTRACTDecades of knockout analyses have highlighted the crucial involvement of estrogen receptors and downstream genes in controlling mating behaviors. More recently, advancements in neural circuit research have unveiled a distributed subcortical network comprising estrogen-receptor or estrogen-synthesis-enzyme-expressing cells that transforms sensory inputs into sex-specific mating actions. This review provides an overview of the latest discoveries on estrogen-responsive neurons in various brain regions and the associated neural circuits that govern different aspects of male and female mating actions in mice. By contextualizing these findings within previous knockout studies of estrogen receptors, we emphasize the emerging field of "circuit genetics", where identifying mating behavior-related neural circuits may allow for a more precise evaluation of gene functions within these circuits. Such investigations will enable a deeper understanding of how hormone fluctuation, acting through estrogen receptors and downstream genes, influences the connectivity and activity of neural circuits, ultimately impacting the manifestation of innate mating actions.PMID:37421660 | DOI:10.1016/j.conb.2023.102749
Source: Current Opinion in Neurobiology - Category: Neurology Authors: Source Type: research