Institut für Neurale Signalverarbeitung, ZMNH, Universitätsklinikum Hamburg-Eppendorf, Universität Hamburg, Martinistr. 52, 20246, Hamburg, Germany.
Pflugers Arch. 2009 Nov;459(1):55-70. doi: 10.1007/s00424-009-0709-4. Epub 2009 Aug 18.
Different erg (ether-à-go-go-related gene; Kv11) K+ channel subunits are expressed throughout the brain. Especially mitral cells of the olfactory bulb are stained intensely by erg1a, erg1b, erg2, and erg3 antibodies. This led us to study the erg current in mitral/tufted (M/T) neurons from mouse olfactory bulb in primary culture. M/T neurons were identified by their morphology and presence of mGluR1 receptors, and RT-PCR demonstrated the expression of all erg subunits in cultured M/T neurons. Using an elevated external K+ concentration, a relatively uniform erg current was recorded in the majority of M/T cells and isolated with the erg channel blocker E-4031. With 4-s depolarizations, the erg current started to activate at -65 mV and exhibited half maximal activation at -51 mV. An increase in the external K+ concentration resulted in an increase in erg whole-cell conductance. The specific group 1 mGluR agonist, DHPG, which depolarizes mitral cells, reduced erg channel availability. DHPG accelerated erg current deactivation, reduced the maximum current amplitude, and shifted availability and activation curves to more depolarized potentials. A pharmacological block of erg channels depolarized the resting potential of M/T cells and clearly demonstrated the involvement of erg channels in the control of mitral cell excitability.
不同的 erg(与醚-a-go-go 相关基因;Kv11)K+通道亚基在大脑中广泛表达。特别是嗅球的僧帽细胞被 erg1a、erg1b、erg2 和 erg3 抗体强烈染色。这促使我们研究原代培养的小鼠嗅球中僧帽/丛状(M/T)神经元中的 erg 电流。M/T 神经元通过其形态和 mGluR1 受体的存在来识别,并通过 RT-PCR 证明了培养的 M/T 神经元中所有 erg 亚基的表达。使用升高的细胞外 K+浓度,可以在大多数 M/T 细胞中记录到相对均匀的 erg 电流,并使用 erg 通道阻断剂 E-4031 进行分离。用 4 秒去极化,erg 电流在 -65 mV 开始激活,并在 -51 mV 时表现出半最大激活。细胞外 K+浓度的增加导致 erg 全细胞电导增加。特定的组 1 mGluR 激动剂 DHPG 使僧帽细胞去极化,减少了 erg 通道的可用性。DHPG 加速了 erg 电流失活,减少了最大电流幅度,并将可用性和激活曲线移向更去极化的电位。erg 通道的药理学阻断使 M/T 细胞的静息电位去极化,清楚地表明 erg 通道参与了对僧帽细胞兴奋性的控制。