Department of Neuroscience, Erasmus Medical Center, 3015 AA Rotterdam, The Netherlands.
Netherlands Institute for Neuroscience, Royal Academy of Arts and Sciences (KNAW), 1105 BA Amsterdam, The Netherlands.
Cells. 2021 Oct 7;10(10):2686. doi: 10.3390/cells10102686.
Purkinje cells (PCs) in the cerebellar cortex can be divided into at least two main subpopulations: one subpopulation that prominently expresses ZebrinII (Z+), and shows a relatively low simple spike firing rate, and another that hardly expresses ZebrinII (Z-) and shows higher baseline firing rates. Likewise, the complex spike responses of PCs, which are evoked by climbing fiber inputs and thus reflect the activity of the inferior olive (IO), show the same dichotomy. However, it is not known whether the target neurons of PCs in the cerebellar nuclei (CN) maintain this bimodal distribution. Electrophysiological recordings in awake adult mice show that the rate of action potential firing of CN neurons that receive input from Z+ PCs was consistently lower than that of CN neurons innervated by Z- PCs. Similar in vivo recordings in juvenile and adolescent mice indicated that the firing frequency of CN neurons correlates to the ZebrinII identity of the PC afferents in adult, but not postnatal stages. Finally, the spontaneous action potential firing pattern of adult CN neurons recorded in vitro revealed no significant differences in intrinsic pacemaking activity between ZebrinII identities. Our findings indicate that all three main components of the olivocerebellar loop, i.e., PCs, IO neurons and CN neurons, operate at a higher rate in the Z- modules.
小脑皮质中的浦肯野细胞(PCs)至少可以分为两个主要亚群:一个亚群显著表达 ZebrinII(Z+),表现出相对较低的简单峰发放频率,另一个亚群几乎不表达 ZebrinII(Z-),表现出更高的基线发放频率。同样,由 climbing fiber 输入引发的 PCs 的复合峰反应,反映了下橄榄核(IO)的活动,也表现出同样的二分法。然而,尚不清楚小脑核(CN)中的 PCs 的靶神经元是否保持这种双峰分布。在清醒的成年小鼠中进行的电生理记录表明,从 Z+ PCs 接收输入的 CN 神经元的动作电位发放率始终低于由 Z- PCs 支配的 CN 神经元。在幼年和青少年小鼠中的类似体内记录表明,CN 神经元的发放频率与成年但不是出生后阶段 PC 传入的 ZebrinII 身份相关。最后,在体外记录的成年 CN 神经元的自发动作电位发放模式中,没有发现 ZebrinII 身份之间内在起搏活动的显著差异。我们的发现表明,橄榄小脑环路的所有三个主要组成部分,即 PCs、IO 神经元和 CN 神经元,在 Z-模块中以更高的速率运行。