INSERM, CNRS, Neurosciences Paris Seine - Institut de Biologie Paris Seine (NPS - IBPS), Sorbonne Université, 75005 Paris, France.
Jupiter Life Science Initiative, Wilkes Honors College and Charles E. Schmidt College of Science, Florida Atlantic University, Jupiter, FL 33458, USA.
Curr Biol. 2021 Nov 8;31(21):4762-4772.e5. doi: 10.1016/j.cub.2021.08.051. Epub 2021 Sep 15.
Survival of animals is dependent on the correct selection of an appropriate behavioral response to competing external stimuli. Theoretical models have been proposed and underlying mechanisms are emerging to explain how one circuit is selected among competing neural circuits. The evolutionarily conserved forebrain to midbrain habenulo-interpeduncular nucleus (Hb-IPN) pathway consists of cholinergic and non-cholinergic neurons, which mediate different aversive behaviors. Simultaneous calcium imaging of neuronal cell bodies and of the population dynamics of their axon terminals reveals that signals in the cell bodies are not reflective of terminal activity. We find that axon terminals of cholinergic and non-cholinergic habenular neurons exhibit stereotypic patterns of spontaneous activity that are negatively correlated and localize to discrete subregions of the target IPN. Patch-clamp recordings show that calcium bursts in cholinergic terminals at the ventral IPN trigger excitatory currents in IPN neurons, which precede inhibition of non-cholinergic terminals at the adjacent dorsal IPN. Inhibition is mediated through presynaptic GABA receptors activated in non-cholinergic habenular neurons upon GABA release from the target IPN. Together, the results reveal a hardwired mode of competition at the terminals of two excitatory neuronal populations, providing a physiological framework to explore the relationship between different aversive responses.
动物的生存取决于对竞争的外部刺激正确选择适当的行为反应。已经提出了理论模型,并且正在出现潜在的机制来解释如何在竞争的神经回路中选择一个回路。进化上保守的前脑到中脑缰核-脚间核(Hb-IPN)途径由胆碱能和非胆碱能神经元组成,它们介导不同的厌恶行为。对神经元细胞体和其轴突末梢的群体动力学的同时钙成像揭示了细胞体中的信号不反映末梢活动。我们发现,胆碱能和非胆碱能缰核神经元的轴突末梢表现出刻板的自发活动模式,这些模式呈负相关,并定位于目标 IPN 的离散亚区。膜片钳记录显示,在腹侧 IPN 中的胆碱能末梢中的钙爆发触发 IPN 神经元中的兴奋性电流,这先于相邻背侧 IPN 中的非胆碱能末梢的抑制。抑制是通过在 GABA 从目标 IPN 释放时从非胆碱能缰核神经元中激活的突触前 GABA 受体介导的。总之,这些结果揭示了两种兴奋性神经元群体末梢的硬性竞争模式,为探索不同厌恶反应之间的关系提供了生理框架。