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神经元G蛋白门控钾通道的分子与细胞多样性

Molecular and cellular diversity of neuronal G-protein-gated potassium channels.

作者信息

Koyrakh Lev, Luján Rafael, Colón Jose, Karschin Christine, Kurachi Yoshihisa, Karschin Andreas, Wickman Kevin

机构信息

Department of Pharmacology, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

J Neurosci. 2005 Dec 7;25(49):11468-78. doi: 10.1523/JNEUROSCI.3484-05.2005.

Abstract

Neuronal G-protein-gated potassium (GIRK) channels mediate the inhibitory effects of many neurotransmitters. Although the overlapping distribution of GIRK subunits suggests that channel composition varies in the CNS, little direct evidence supports the existence of structural or functional diversity in the neuronal GIRK channel repertoire. Here we show that the GIRK channels linked to GABAB receptors differed in two neuron populations. In the substantia nigra, GIRK2 was the principal subunit, and it was found primarily in dendrites of neurons in the substantia nigra pars compacta (SNc). Baclofen evoked prominent barium-sensitive outward current in dopamine neurons of the SNc from wild-type mice, but this current was completely absent in neurons from GIRK2 knock-out mice. In the hippocampus, all three neuronal GIRK subunits were detected. The loss of GIRK1 or GIRK2 was correlated with equivalent, dramatic reductions in baclofen-evoked current in CA1 neurons. Virtually all of the barium-sensitive component of the baclofen-evoked current was eliminated with the ablation of both GIRK2 and GIRK3, indicating that channels containing GIRK3 contribute to the postsynaptic inhibitory effect of GABAB receptor activation. The impact of GIRK subunit ablation on baclofen-evoked current was consistent with observations that GIRK1, GIRK2, and GABAB receptors were enriched in lipid rafts isolated from mouse brain, whereas GIRK3 was found primarily in higher-density membrane fractions. Altogether, our data show that different GIRK channel subtypes can couple to GABAB receptors in vivo. Furthermore, subunit composition appears to specify interactions between GIRK channels and organizational elements involved in channel distribution and efficient receptor coupling.

摘要

神经元G蛋白门控钾通道(GIRK)介导多种神经递质的抑制作用。尽管GIRK亚基的重叠分布表明中枢神经系统中通道组成存在差异,但几乎没有直接证据支持神经元GIRK通道库中存在结构或功能多样性。在这里,我们表明与GABAB受体相关的GIRK通道在两种神经元群体中存在差异。在黑质中,GIRK2是主要亚基,主要存在于黑质致密部(SNc)神经元的树突中。巴氯芬在野生型小鼠SNc的多巴胺能神经元中诱发显著的钡敏感外向电流,但在GIRK2基因敲除小鼠的神经元中该电流完全缺失。在海马体中,检测到了所有三种神经元GIRK亚基。GIRK1或GIRK2的缺失与CA1神经元中巴氯芬诱发电流的同等显著减少相关。实际上,随着GIRK2和GIRK3的缺失,巴氯芬诱发电流的几乎所有钡敏感成分都被消除,这表明含有GIRK3的通道有助于GABAB受体激活的突触后抑制作用。GIRK亚基缺失对巴氯芬诱发电流的影响与以下观察结果一致:GIRK1、GIRK2和GABAB受体在从小鼠脑部分离的脂筏中富集,而GIRK3主要存在于更高密度的膜组分中。总之,我们的数据表明不同的GIRK通道亚型在体内可与GABAB受体偶联。此外,亚基组成似乎决定了GIRK通道与参与通道分布和有效受体偶联的组织元件之间的相互作用。

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