Russo Marco J, Yau Hau-Jie, Nunzi Maria-Grazia, Mugnaini Enrico, Martina Marco
Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA.
J Neurophysiol. 2008 Dec;100(6):3351-60. doi: 10.1152/jn.90533.2008. Epub 2008 Oct 22.
Neuronal firing is regulated by the complex interaction of multiple depolarizing and hyperpolarizing currents; intrinsic firing, which defines the neuronal ability to generate action potentials in the absence of synaptic excitation, is particularly sensitive to modulation by currents that are active below the action potential threshold. Cerebellar unipolar brush cells (UBCs) are excitatory granule layer interneurons that are capable of intrinsic firing; here we show that, in acute mouse cerebellar slices, barium-sensitive background potassium channels of UBCs effectively regulate intrinsic firing. We also demonstrate that these channels are regulated by group II metabotropic glutamate receptors (mGluRs), which we show to be present in both of the known subsets of UBCs, one of which expresses calretinin and the other mGluR1alpha. Finally, we show that background potassium currents controlling UBCs' firing are mediated by at least two channel types, one of which is sensitive and the other insensitive to the GIRK blocker tertiapin. Thus in UBCs, glutamatergic transmission appears to have a complex bimodal effect: although it increases spontaneous firing through activation of ionotropic receptors, it also has inhibitory effects through the mGluR-dependent activation of tertiapin-sensitive and -insensitive background potassium currents.
神经元放电受多种去极化电流和超极化电流复杂相互作用的调节;内在放电定义了神经元在无突触兴奋时产生动作电位的能力,对低于动作电位阈值时活跃的电流调制尤为敏感。小脑单极刷状细胞(UBCs)是能够进行内在放电的兴奋性颗粒层中间神经元;在此我们表明,在急性小鼠小脑切片中,UBCs的钡敏感背景钾通道有效调节内在放电。我们还证明这些通道受II型代谢型谷氨酸受体(mGluRs)调节,我们发现mGluRs存在于UBCs的两个已知亚群中,其中一个亚群表达钙视网膜蛋白,另一个表达mGluR1α。最后,我们表明控制UBCs放电的背景钾电流由至少两种通道类型介导,其中一种对GIRK阻滞剂特律平敏感,另一种不敏感。因此在UBCs中,谷氨酸能传递似乎具有复杂的双峰效应:尽管它通过离子型受体的激活增加自发放电,但它也通过mGluR依赖的对特律平敏感和不敏感的背景钾电流激活产生抑制作用。