Obata Research Unit, RIKEN Brain Science Institute, Saitama, Japan.
PLoS One. 2012;7(1):e29663. doi: 10.1371/journal.pone.0029663. Epub 2012 Jan 3.
Inhibitory interneurons in the cerebellar granular layer are more heterogeneous than traditionally depicted. In contrast to Golgi cells, which are ubiquitously distributed in the granular layer, small fusiform Lugaro cells and globular cells are located underneath the Purkinje cell layer and small in number. Globular cells have not been characterized physiologically. Here, using cerebellar slices obtained from a strain of gene-manipulated mice expressing GFP specifically in GABAergic neurons, we morphologically identified globular cells, and compared their synaptic activity and monoaminergic influence of their electrical activity with those of small Golgi cells and small fusiform Lugaro cells. Globular cells were characterized by prominent IPSCs together with monosynaptic inputs from the axon collaterals of Purkinje cells, whereas small Golgi cells or small fusiform Lugaro cells displayed fewer and smaller spontaneous IPSCs. Globular cells were silent at rest and fired spike discharges in response to application of either serotonin (5-HT) or noradrenaline. The two monoamines also facilitated small Golgi cell firing, but only 5-HT elicited firing in small fusiform Lugaro cells. Furthermore, globular cells likely received excitatory monosynaptic inputs through mossy fibers. Because globular cells project their axons long in the transversal direction, the neuronal circuit that includes interplay between Purkinje cells and globular cells could regulate Purkinje cell activity in different microzones under the influence of monoamines and mossy fiber inputs, suggesting that globular cells likely play a unique modulatory role in cerebellar motor control.
小脑颗粒层中的抑制性中间神经元比传统描绘的更为多样。与广泛分布在颗粒层中的高尔基细胞不同,小梭形的 Lugaro 细胞和小球形细胞位于浦肯野细胞层下方,数量较少。小球形细胞的生理特性尚未得到描述。在这里,我们使用在 GABA 能神经元中特异性表达 GFP 的基因操作小鼠的小脑切片,从形态上鉴定了小球形细胞,并比较了它们的突触活动和电活动的单胺能影响,与小高尔基细胞和小梭形 Lugaro 细胞进行了比较。小球形细胞的特征是 IPSC 明显,同时还有来自浦肯野细胞轴突分支的单突触输入,而小高尔基细胞或小梭形 Lugaro 细胞显示出较少和较小的自发性 IPSC。小球形细胞在静息时处于沉默状态,对 5-羟色胺(5-HT)或去甲肾上腺素的应用会产生尖峰放电。这两种单胺类物质也促进了小高尔基细胞的放电,但只有 5-HT 会引起小梭形 Lugaro 细胞的放电。此外,小球形细胞可能通过苔藓纤维接收兴奋性单突触输入。由于小球形细胞的轴突在横向上长程投射,因此包括浦肯野细胞和小球形细胞相互作用的神经元回路可能会在单胺类物质和苔藓纤维输入的影响下调节不同微区的浦肯野细胞活动,这表明小球形细胞可能在小脑运动控制中发挥独特的调节作用。