Gore Bryan B, Miller Samara M, Jo Yong Sang, Baird Madison A, Hoon Mrinalini, Sanford Christina A, Hunker Avery, Lu Weining, Wong Rachel O, Zweifel Larry S
Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle, United States.
Department of Pharmacology, University of Washington, Seattle, United States.
Elife. 2017 Apr 10;6:e23858. doi: 10.7554/eLife.23858.
The maintenance of excitatory and inhibitory balance in the brain is essential for its function. Here we find that the developmental axon guidance receptor Roundabout 2 (Robo2) is critical for the maintenance of inhibitory synapses in the adult ventral tegmental area (VTA), a brain region important for the production of the neurotransmitter dopamine. Following selective genetic inactivation of in the adult VTA of mice, reduced inhibitory control results in altered neural activity patterns, enhanced phasic dopamine release, behavioral hyperactivity, associative learning deficits, and a paradoxical inversion of psychostimulant responses. These behavioral phenotypes could be phenocopied by selective inactivation of synaptic transmission from local GABAergic neurons of the VTA, demonstrating an important function for Robo2 in regulating the excitatory and inhibitory balance of the adult brain.
大脑中兴奋性和抑制性平衡的维持对其功能至关重要。我们发现,发育性轴突导向受体Roundabout 2(Robo2)对于成年腹侧被盖区(VTA)抑制性突触的维持至关重要,VTA是一个对神经递质多巴胺产生很重要的脑区。在成年小鼠的VTA中选择性基因失活Robo2后,抑制性控制减弱导致神经活动模式改变、阶段性多巴胺释放增强、行为多动、联想学习缺陷以及精神兴奋剂反应的反常反转。这些行为表型可通过选择性失活VTA局部GABA能神经元的突触传递来模拟,表明Robo2在调节成人大脑兴奋性和抑制性平衡中具有重要作用。