Center for Molecular and Behavioral Neuroscience, Rutgers University, Newark, New Jersey, USA.
Nat Neurosci. 2011 Dec 11;15(1):123-30. doi: 10.1038/nn.2984.
Neostriatal cholinergic interneurons are believed to be important for reinforcement-mediated learning and response selection by signaling the occurrence and motivational value of behaviorally relevant stimuli through precisely timed multiphasic population responses. An important problem is to understand how these signals regulate the functioning of the neostriatum. Here we describe the synaptic organization of a previously unknown circuit that involves direct nicotinic excitation of several classes of GABAergic interneurons, including neuroptide Y-expressing neurogilaform neurons, and enables cholinergic interneurons to exert rapid inhibitory control of the activity of projection neurons. We also found that, in vivo, the dominant effect of an optogenetically reproduced pause-excitation population response of cholinergic interneurons was powerful and rapid inhibition of the firing of projection neurons that is coincident with synchronous cholinergic activation. These results reveal a previously unknown circuit mechanism that transmits reinforcement-related information of ChAT interneurons in the mouse neostriatal network.
纹状体胆碱能中间神经元被认为对强化介导的学习和反应选择很重要,它们通过精确计时的多相群体反应来传递与行为相关刺激的发生和动机价值信号。一个重要的问题是了解这些信号如何调节新纹状体的功能。在这里,我们描述了一个以前未知的回路的突触组织,该回路涉及几种 GABA 能中间神经元的直接烟碱兴奋,包括神经肽 Y 表达的神经胶质神经元,并使胆碱能中间神经元能够对投射神经元的活动进行快速抑制控制。我们还发现,在体内,光遗传重现的胆碱能中间神经元的暂停-兴奋群体反应的主要作用是强大而快速地抑制与同步胆碱能激活偶联的投射神经元的放电。这些结果揭示了一种以前未知的回路机制,该机制在小鼠新纹状体网络中传递 ChAT 中间神经元的强化相关信息。