Laboratory for Neuronal Circuit Dynamics, Brain Science Institute, RIKEN, Wako-shi, Saitama, Japan.
Cerebellum. 2010 Mar;9(1):42-55. doi: 10.1007/s12311-009-0137-1.
The deep cerebellar nuclei (DCN) are a major hub in the cerebellar circuitry but the functional classification of their neurons is incomplete. We have previously characterized three cell groups in the lateral cerebellar nucleus: large non-GABAergic neurons and two groups of smaller neurons, one of which express green fluorescence protein (GFP) in a GAD67/GFP mouse line and is therefore GABAergic. However, as a substantial number of glycinergic and glycine/GABA co-expressing neurons have been described in the DCN, this classification needed to be refined by considering glycinergic neurons. To this end we took advantage of a glycine transporter isoform 2 (GlyT2)-eGFP mouse line that allows identification of GlyT2-expressing, presumably glycinergic neurons in living cerebellar slices and compared their electrophysiological properties with previously described DCN neuron populations. We found two electrophysiologically and morphologically distinct sets of GlyT2-expressing neurons in the lateral cerebellar nucleus. One of them showed electrophysiological similarity to the previously characterized GABAergic cell group. The second GlyT2+ cell population, however, differed from all other so far described neuron types in DCN in that the cells (1) are intrinsically silent in slices and only fire action potentials upon depolarizing current injection and (2) have a projecting axon that was often seen to leave the DCN and project in the direction of the cerebellar cortex. Presence of this so far undescribed DCN neuron population in the lateral nucleus suggests a direct inhibitory pathway from the DCN to the cerebellar cortex.
小脑深部核(DCN)是小脑回路中的一个主要枢纽,但它们的神经元功能分类并不完整。我们之前已经在外侧小脑核中描述了三个细胞群:大型非 GABA 能神经元和两个较小神经元群,其中一个在 GAD67/GFP 小鼠系中表达绿色荧光蛋白(GFP),因此是 GABA 能神经元。然而,由于 DCN 中已经描述了大量的甘氨酸能和甘氨酸/GABA 共表达神经元,因此需要通过考虑甘氨酸能神经元来对这种分类进行细化。为此,我们利用一种甘氨酸转运体同工型 2(GlyT2)-eGFP 小鼠系,该小鼠系允许在活体小脑切片中识别表达 GlyT2 的神经元,推测是甘氨酸能神经元,并将其电生理特性与之前描述的 DCN 神经元群体进行比较。我们在外侧小脑核中发现了两组在电生理和形态上都不同的 GlyT2 表达神经元。其中一组与之前描述的 GABA 能细胞群表现出电生理相似性。然而,第二种 GlyT2+细胞群与 DCN 中迄今为止描述的所有其他神经元类型都不同,因为这些细胞 (1) 在切片中是内在沉默的,只有在去极化电流注入时才会产生动作电位,并且 (2) 具有投射轴突,该轴突经常被观察到离开 DCN 并朝向小脑皮层投射。外侧核中存在这种迄今为止未被描述的 DCN 神经元群体表明,DCN 与小脑皮层之间存在直接的抑制性通路。