Perisse Emmanuel, Owald David, Barnstedt Oliver, Talbot Clifford B, Huetteroth Wolf, Waddell Scott
Centre for Neural Circuits and Behaviour, The University of Oxford, Tinsley Building, Mansfield Road, Oxford, OX1 3SR, UK.
Centre for Neural Circuits and Behaviour, The University of Oxford, Tinsley Building, Mansfield Road, Oxford, OX1 3SR, UK.
Neuron. 2016 Jun 1;90(5):1086-99. doi: 10.1016/j.neuron.2016.04.034. Epub 2016 May 19.
In Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory control of satiety over appetitive memory expression. Here we show that aversive learning causes a persistent depression of the conditioned odor drive to two downstream feed-forward inhibitory GABAergic interneurons of the mushroom body, called MVP2, or mushroom body output neuron (MBON)-γ1pedc>α/β. However, MVP2 neuron output is only essential for expression of short-term aversive memory. Stimulating MVP2 neurons preferentially inhibits the odor-evoked activity of avoidance-directing MBONs and odor-driven avoidance behavior, whereas their inhibition enhances odor avoidance. In contrast, odor-evoked activity of MVP2 neurons is elevated in hungry flies, and their feed-forward inhibition is required for expression of appetitive memory at all times. Moreover, imposing MVP2 activity promotes inappropriate appetitive memory expression in food-satiated flies. Aversive learning and appetitive motivation therefore toggle alternate modes of a common feed-forward inhibitory MVP2 pathway to promote conditioned odor avoidance or approach.
在果蝇中,具有负向强化作用的多巴胺能神经元也对饱腹感对食欲记忆表达的抑制控制起作用。我们在此表明,厌恶学习会使果蝇对蘑菇体的两个下游前馈抑制性γ-氨基丁酸能中间神经元(称为MVP2或蘑菇体输出神经元MBON-γ1pedc>α/β)的条件性气味驱动产生持续性抑制。然而,MVP2神经元的输出仅对短期厌恶记忆的表达至关重要。刺激MVP2神经元会优先抑制引导回避行为的蘑菇体输出神经元的气味诱发活动以及气味驱动的回避行为,而对它们的抑制则会增强气味回避。相反,饥饿果蝇中MVP2神经元的气味诱发活动会升高,并且它们的前馈抑制在任何时候都是食欲记忆表达所必需的。此外,强制激活MVP2会促进饱腹果蝇出现不适当的食欲记忆表达。因此,厌恶学习和食欲动机通过切换共同的前馈抑制性MVP2通路的交替模式,来促进条件性气味回避或趋近行为。