Department of Fundamental Neuroscience, University of Lausanne, 1005 Lausanne, Switzerland.
Department of Pharmacology, Medical University of Innsbruck, 6020 Innsbruck, Austria.
Neuron. 2019 Apr 3;102(1):120-127.e4. doi: 10.1016/j.neuron.2019.01.025. Epub 2019 Feb 11.
Throughout life, individuals learn to predict a punishment via its association with sensory stimuli. This process ultimately prompts goal-directed actions to prevent the danger, a behavior defined as avoidance. Neurons in the lateral habenula (LHb) respond to aversive events as well as to environmental cues predicting them, supporting LHb contribution to cue-punishment association. However, whether synaptic adaptations at discrete habenular circuits underlie such associative learning to instruct avoidance remains elusive. Here, we find that, in mice, contingent association of an auditory cue (tone) with a punishment (foot shock) progressively causes cue-driven LHb neuronal excitation during avoidance learning. This process is concomitant with the strengthening of LHb AMPA receptor-mediated neurotransmission. Such a phenomenon occludes long-term potentiation and occurs specifically at hypothalamus-to-habenula synapses. Silencing hypothalamic-to-habenulainputs or optically inactivating postsynaptic AMPA receptors within the LHb disrupts avoidance learning. Altogether, synaptic strengthening at a discrete habenular circuit transforms neutral stimuli into salient punishment-predictive cues to guide avoidance.
在整个生命过程中,个体通过将感官刺激与惩罚联系起来学会预测惩罚。这个过程最终促使他们采取有针对性的行动来预防危险,这种行为被定义为回避。外侧缰核(LHb)中的神经元对厌恶事件以及预测它们的环境线索做出反应,这支持了 LHb 对线索-惩罚关联的贡献。然而,离散缰核电路中的突触适应是否为指导回避的这种联想学习提供基础仍不清楚。在这里,我们发现,在小鼠中,听觉线索(音调)与惩罚(足底电击)的偶然关联在回避学习过程中逐渐导致线索驱动的 LHb 神经元兴奋。这一过程伴随着 LHb 中 AMPA 受体介导的神经传递的增强。这种现象会阻止长时程增强,并仅在下丘脑-缰核突触处发生。沉默下丘脑到缰核的输入,或用光失活 LHb 中的突触后 AMPA 受体,会破坏回避学习。总的来说,离散缰核电路中的突触强化将中性刺激转化为显著的惩罚预测线索,以指导回避。