Prüss Harald, Derst Christian, Lommel Reinhard, Veh Rüdiger W
Centrum für Anatomie der Charité, Universitätsklinikum der Humboldt-Universität Berlin, Philippstr. 12,10115 Berlin, Germany.
Brain Res Mol Brain Res. 2005 Sep 13;139(1):63-79. doi: 10.1016/j.molbrainres.2005.05.006.
Inwardly rectifying potassium (Kir) channels modulate cellular excitability, membrane potential, and secretion of neurotransmitters and hormones. Kir channels with the strongest inward rectification belong to the Kir2 family. In this report, polyclonal monospecific affinity-purified antibodies against the less conserved carboxy-terminal sequences of Kir2.1, Kir2.2, Kir2.3, and Kir2.4 were used to analyze the detailed distribution of all members of the Kir2 family in the rat central nervous system. Kir2 channel expression is detected in neurons but not in glial cells. Kir2 protein distribution confirms the basic mRNA localization pattern given by in situ hybridization. Kir2.1 is detected throughout the whole brain but in particular subsets of neurons with highest expression in olfactory bulb and superior colliculus. Kir2.2 immunoreactivity is primarily displayed in several forebrain nuclei, hypothalamus, cerebellum, and spinal cord. The Kir2.3 subunit is predominantly localized in olfactory bulb, basal ganglia, cortex, and cerebellar Purkinje cells. In contrast, Kir2.4-positive staining is detected at significantly lower levels in most neurons throughout the rat brain with highest expression in brainstem motoneurons. Thus, our data show a more widespread distribution of Kir2.4 than previously determined. In summary, the widespread presence of all four Kir2 channel subunits in the rat brain provides further evidence for their important role in central signal processing and neural transmission.
内向整流钾(Kir)通道调节细胞兴奋性、膜电位以及神经递质和激素的分泌。具有最强内向整流作用的Kir通道属于Kir2家族。在本报告中,针对Kir2.1、Kir2.2、Kir2.3和Kir2.4保守性较低的羧基末端序列的多克隆单特异性亲和纯化抗体,用于分析Kir2家族所有成员在大鼠中枢神经系统中的详细分布。在神经元中检测到Kir2通道表达,而在神经胶质细胞中未检测到。Kir2蛋白分布证实了原位杂交给出的基本mRNA定位模式。在全脑中均检测到Kir2.1,但在嗅球和上丘中表达最高的特定神经元亚群中尤其明显。Kir2.2免疫反应主要表现在几个前脑核、下丘脑、小脑和脊髓中。Kir2.3亚基主要定位于嗅球、基底神经节、皮层和小脑浦肯野细胞中。相比之下,在大鼠脑内大多数神经元中,Kir2.4阳性染色水平明显较低,在脑干运动神经元中表达最高。因此,我们的数据表明Kir2.4的分布比先前确定的更为广泛。总之,大鼠脑中所有四种Kir2通道亚基的广泛存在,为它们在中枢信号处理和神经传递中的重要作用提供了进一步的证据。