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HCN1 channels in GABAergic amygdalar neurons underpin male-biased aggressive behaviors

Li, K.; Zhu, Z.; Wang, Q.; Pan, L.; Miao, L.; Deng, G.; Wu, J.; Lou, H.; Zeng, L.; Liu, Y.; Li, X.-M.; Duan, S.; Sun, L.; Yu, Y.

2024-12-08 neuroscience
10.1101/2024.12.07.627305 bioRxiv
Show abstract

Aggression behaviors typically vary between sexes, but the molecular mechanisms driving these disparities in neural coding are unclear. We found that aggression selectively activates GABAergic neurons in the posterior substantia innominata (pSI), an extend amygdala region critical for aggressive behaviors in both sexes of mice, with males exhibiting higher neuronal activity during the attack. Utilizing single-nucleus RNA sequencing, we characterized the diverse molecular landscape of pSI neurons, revealing significant differences in ion channels and hormone regulator genes that may underpin sex-specific aggression. Male GABAergic pSI neurons exhibited remarkable hyperexcitability due to increased Ih currents. Strikingly, modulating HCN1 expression not only adjusted this hyperexcitability but also influenced sexual dimorphism in aggression: silencing HCN1 in the GABAergic pSI neurons reduced male aggression, while its overexpression markedly heightened aggression in females. Furthermore, testosterone was shown to intensify aggression by upregulating HCN1 and remodeling pSI circuits. These findings provide detailed sex-specific molecular mechanisms underlying social behaviors.

Published in Neuron (predicted rank #4) · training set

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