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Parvalbumin-expressing basal forebrain neurons mediate learning from negative experience

Biology

Parvalbumin-expressing basal forebrain neurons mediate learning from negative experience

P. Hegedüs, B. Király, et al.

Discover the crucial role of parvalbumin-expressing GABAergic neurons in associative learning! This research, conducted by Panna Hegedüs and team, reveals how these neurons respond to aversive stimuli, potentially reshaping our understanding of arousal systems in the brain.... show more
Abstract
Parvalbumin (PV)-expressing GABAergic neurons of the basal forebrain (BFPVNs) were proposed to serve as a rapid and transient arousal system, yet their exact role in awake behaviors remains unclear. We performed bulk calcium measurements and electrophysiology with optogenetic tagging from the horizontal limb of the diagonal band of Broca (HDB) while male mice were performing an associative learning task. BFPVNs responded with a distinctive, phasic activation to punishment, but showed slower and delayed responses to reward and outcome-predicting stimuli. Optogenetic inhibition during punishment impaired the formation of cue-outcome associations, suggesting a causal role of BFPVNs in associative learning. BFPVNs received strong inputs from the hypothalamus, the septal complex and the median raphe region, while they synapsed on diverse cell types in key limbic structures, where they broadcasted information about aversive stimuli. We propose that the arousing effect of BFPVNs is recruited by aversive stimuli to serve crucial associative learning functions.
Publisher
Nature Communications
Published On
Jun 07, 2024
Authors
Panna Hegedüs, Bálint Király, Dániel Schlingloff, Victoria Lyakhova, Anna Velencei, Írisz Szabó, Márton I. Mayer, Zsofia Zelenak, Gábor Nyiri, Balázs Hangya
Tags
parvalbumin
GABAergic neurons
associative learning
arousal system
aversive stimuli
electrophysiology
optogenetics
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