Neusch Clemens, Papadopoulos Nestoras, Müller Michael, Maletzki Iris, Winter Stefan M, Hirrlinger Johannes, Handschuh Melanie, Bähr Mathias, Richter Diethelm W, Kirchhoff Frank, Hülsmann Swen
Dept. of Neurology, Georg-August-Univ. Göttingen, Humboldtallee 23, 37073 Göttingen, Germany.
J Neurophysiol. 2006 Mar;95(3):1843-52. doi: 10.1152/jn.00996.2005. Epub 2005 Nov 23.
Ongoing rhythmic neuronal activity in the ventral respiratory group (VRG) of the brain stem results in periodic changes of extracellular K+. To estimate the involvement of the weakly inwardly rectifying K+ channel Kir4.1 (KCNJ10) in extracellular K+ clearance, we examined its functional expression in astrocytes of the respiratory network. Kir4.1 was expressed in astroglial cells of the VRG, predominantly in fine astrocytic processes surrounding capillaries and in close proximity to VRG neurons. Kir4.1 expression was up-regulated during early postnatal development. The physiological role of astrocytic Kir4.1 was studied using mice with a null mutation in the Kir4.1 channel gene that were interbred with transgenic mice expressing the enhanced green fluorescent protein in their astrocytes. The membrane potential was depolarized in astrocytes of Kir4.1-/- mice, and Ba2+-sensitive inward K+ currents were diminished. Brain slices from Kir4.1-/- mice, containing the pre-Bötzinger complex, which generates a respiratory rhythm, did not show any obvious differences in rhythmic bursting activity compared with wild-type controls, indicating that the lack of Kir4.1 channels alone does not impair respiratory network activity. Extracellular K+ measurements revealed that Kir4.1 channels contribute to extracellular K+ regulation. Kir4.1 channels reduce baseline K+ levels, and they compensate for the K+ undershoot. Our data indicate that Kir4.1 channels 1) are expressed in perineuronal processes of astrocytes, 2) constitute the major part of the astrocytic Kir conductance, and 3) contribute to regulation of extracellular K+ in the respiratory network.
脑干腹侧呼吸组(VRG)中持续的节律性神经元活动会导致细胞外钾离子(K+)的周期性变化。为了评估弱内向整流钾离子通道Kir4.1(KCNJ10)在细胞外K+清除中的作用,我们检测了其在呼吸网络星形胶质细胞中的功能表达。Kir4.1在VRG的星形胶质细胞中表达,主要存在于围绕毛细血管的纤细星形胶质细胞突起中,且紧邻VRG神经元。Kir4.1的表达在出生后早期发育过程中上调。我们使用Kir4.1通道基因发生无效突变的小鼠与在星形胶质细胞中表达增强型绿色荧光蛋白的转基因小鼠杂交,研究星形胶质细胞Kir4.1的生理作用。Kir4.1基因敲除小鼠的星形胶质细胞膜电位去极化,且钡离子(Ba2+)敏感的内向钾电流减小。含有前包钦格复合体(可产生呼吸节律)的Kir4.1基因敲除小鼠脑片与野生型对照相比,在节律性爆发活动方面未显示出任何明显差异,这表明仅缺乏Kir4.1通道不会损害呼吸网络活动。细胞外K+测量结果显示,Kir4.1通道有助于细胞外K+的调节。Kir4.1通道可降低基线K+水平,并补偿K+下冲。我们的数据表明,Kir4.1通道:1)在星形胶质细胞的神经元周围突起中表达;2)构成星形胶质细胞Kir电导的主要部分;3)有助于调节呼吸网络中的细胞外K+。