VTA monosynaptic connections by local glutamate and GABA neurons and their distinct roles in behavior
Abstract
Abstract The ventral tegmental area (VTA) dopamine neurons have been implicated in diverse behaviors. These VTAdopamine neurons are intermixed with neurons that co-transmit glutamate and GABA (VTAglutamate-GABA), transmit glutamate (VTAglutamate-only) or GABA (VTAGABA-only). In dual recombinase vglut2-Cre/vgat-Flp transgenic mice, we combined quantitative ultrastructural analysis with 3D correlative light and electron microscopy and found that VTAglutamate-only neurons frequently established synapses on VTAdopamine and VTAglutamate-only neurons, and that VTAGABA-only neurons mostly synapsed on VTAdopamine neurons. By selective targeting of VTA subpopulations of neurons, we demonstrated that activation of VTAglutamate-only neurons is rewarding and decreases feeding behavior, while activation of VTAGABA-only neurons is aversive. We found that activation of VTAglutamate-only or VTAGABA-only neurons negatively affected learning to obtain food reward, and impaired cue-induced reinstatement of food-seeking behavior. Collectively, we demonstrated the monosynaptic properties of an unexpected VTA microcircuitry in which distinct neuronal components integrate information related to reward, aversion, and feeding.
Article Details
Authors (10)
M. Flavia Barbano
Huiling Wang
Engineering Research Center of Photoenergy Utilization for Pollution Control and Carbon Reduction, Ministry of Education, College of Chemistry
Shiliang Zhang
Alexey V. Shevelkin
Kevin J. Yu
Christopher T. Richie
Bing Liu
Suyun Hahn
Rong Ye
Department of Chemical Engineering
Marisela Morales