Department of Neurobiology, Institute of Life Sciences and Edmond & Lily Safra Center for Brain Sciences (ELSC), The Hebrew University, 91904 Jerusalem, Israel.
Department of Neurobiology, Institute of Life Sciences and Edmond & Lily Safra Center for Brain Sciences (ELSC), The Hebrew University, 91904 Jerusalem, Israel.
Neuron. 2014 Mar 19;81(6):1389-1400. doi: 10.1016/j.neuron.2014.02.032.
GABAergic projection neurons in the cerebellar nuclei (CN) innervate the inferior olive (IO) that in turn is the source of climbing fibers targeting Purkinje neurons in the cerebellar cortex. Anatomical evidence suggests that CN synapses modulate electrical coupling between IO neurons. In vivo studies indicate that they are also involved in controlling synchrony and rhythmicity of IO neurons. Here, we demonstrate using virally targeted channelrhodopsin in the cerebellar nucleo-olivary neurons that synaptic input can indeed modulate both the strength and symmetry of electrical coupling between IO neurons and alter network activity. Similar synaptic modifications of electrical coupling are likely to occur in other brain regions, where rapid modification of the spatiotemporal features of the coupled networks is needed to adequately respond to behavioral demands.
小脑核中的 GABA 能投射神经元支配下橄榄核(IO),IO 反过来又是向小脑皮层浦肯野神经元投射的 climbing 纤维的来源。解剖学证据表明,小脑核突触调节 IO 神经元之间的电耦联。体内研究表明,它们还参与控制 IO 神经元的同步性和节律性。在这里,我们使用小脑核-橄榄神经元中的病毒靶向通道视紫红质证明,突触输入确实可以调节 IO 神经元之间电耦联的强度和对称性,并改变网络活动。类似的电耦联的突触修饰可能发生在其他脑区,在这些脑区中,需要快速改变耦合网络的时空特征,以充分响应行为需求。