Winning increases the readiness to attack and the probability of winning, a widespread phenomenon known as the "winner effect." Here, we reveal a transition from target-specific to generalized aggression enhancement over 10Â days of winning in male mice. This behavioral change is supported by three causally linked plasticity events in the ventrolateral part of the ventromedial hypothalamus (VMHvl), a critical node for aggression. Over 10Â days of winning, VMHvl cells experience monotonic potentiation of long-range excitatory inputs, transient local connectivity strengthening, and a delayed excitability increase. Optogenetically coactivating the posterior amygdala (PA) terminals and VMHvl cells potentiates the PA-VMHvl pathway and triggers the same cascade of plasticity events observed during repeated winning. Optogenetically blocking PA-VMHvl synaptic potentiation eliminates all winning-induced plasticity. These results reveal the complex Hebbian synaptic and excitability plasticity in the aggression circuit during winning, ultimately leading to increased "aggressiveness" in repeated winners.
The multi-stage plasticity in the aggression circuit underlying the winner effect.
获胜者效应背后的攻击回路的多阶段可塑性
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作者:Yan Rongzhen, Wei Dongyu, Varshneya Avni, Shan Lynn, Dai Bing, Asencio Hector J 3rd, Gollamudi Aishwarya, Lin Dayu
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2024 | 起止号: | 2024 Nov 27; 187(24):6785-6803 |
| doi: | 10.1016/j.cell.2024.09.030 | ||
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