Birnstiel S, Slater N T, McCrimmon D R, Mugnaini E, Hartell N A
Northwestern University Institute for Neuroscience, Northwestern University Feinberg School of Medicine, 320 East Superior Street, Chicago, IL 60611, USA.
Neuroscience. 2009 Sep 1;162(3):702-12. doi: 10.1016/j.neuroscience.2009.01.051. Epub 2009 Feb 3.
Unipolar brush cells (UBCs) are a class of excitatory interneuron found in the granule cell layer of the vestibulocerebellum. Mossy fibers form excitatory inputs on to the paint brush shaped dendrioles in the form of giant, glutamatergic synapses, activation of which results in prolonged bursts of action potentials in the postsynaptic UBC. The axons of UBCs themselves form mossy fiber contacts with other UBCs and granule cells, forming an excitatory, intrinsic cerebellar network that has the capacity to synchronize and amplify mossy fiber inputs to potentially large populations of granule cells. In this paper, we demonstrate that UBCs in rat cerebellar slices express low voltage activated (LVA) fast-inactivating and high voltage activated (HVA) slowly inactivating calcium channels. LVA calcium currents are mediated by T-type calcium channels and they are associated with calcium increases in the dendrites and to a lesser extent the cell soma. HVA currents, mediated by L-type calcium channels, are slowly inactivating and they produce larger overall increases in intracellular calcium but with a similar distribution pattern. We review these observations alongside several recent papers that examine how intrinsic membrane properties influence UBCs firing patterns and we discuss how UBC signaling may affect downstream cerebellar processing.
单极刷细胞(UBCs)是在前庭小脑颗粒细胞层中发现的一类兴奋性中间神经元。苔藓纤维以巨大的谷氨酸能突触的形式在刷状树突上形成兴奋性输入,其激活会导致突触后单极刷细胞产生长时间的动作电位爆发。单极刷细胞的轴突本身与其他单极刷细胞和颗粒细胞形成苔藓纤维联系,形成一个兴奋性的小脑固有网络,该网络有能力同步和放大苔藓纤维对大量颗粒细胞的输入。在本文中,我们证明大鼠小脑切片中的单极刷细胞表达低电压激活(LVA)快速失活和高电压激活(HVA)缓慢失活的钙通道。LVA钙电流由T型钙通道介导,它们与树突中的钙增加有关,在较小程度上与细胞体中的钙增加有关。由L型钙通道介导的HVA电流缓慢失活,它们在细胞内钙中产生更大的总体增加,但分布模式相似。我们结合最近几篇研究内在膜特性如何影响单极刷细胞放电模式的论文来回顾这些观察结果,并讨论单极刷细胞信号传导可能如何影响小脑下游处理。