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Evidence of Decreased Activity in Intermediate-Conductance Calcium-Activated Potassium Channels During Retinoic Acid–Induced Differentiation in Motor Neuron–Like NSC-34 Cells

机译:中间导钙活化钾通道活性降低的证据在电动机神经元的NSC-34细胞中的视黄酸诱导的分化期间

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摘要

Background/Aims: Intermediate-conductance Ca2+-activated K+ (IKCa; KCa3.1 or KCNN4) channels affect the behaviors of central neurons including motor neurons. The mechanism through which neuronal differentiation is related to the activity of these channels remains largely unclear. Methods: By using various molecular biology tools and electrophysiological measurements, we investigated possible changes in the activity of IKCa channels in a retinoic acid (RA)-induced differentiation process in motor neuron-like NSC-34 cells. Results: The protein and messenger RNA expression of KCa3.1 substantially diminished as NSC-34 cells were differentiated with low serum (1%) and 1 µM RA. In whole-cell current recordings, the density of delayed-rectifier K+ currents obtained from differentiated cells was elevated. However, the density of a ramp pulse-elicited K+ current that was sensitive to blockage by 1-((2-chlorophenyl) (diphenyl)methyl)-1H-pyrazole (TRAM-34)—an inhibitor of IKCa channels—was significantly higher in undifferentiated NSC-34 cells than in differentiated cells. In undifferentiated cells, the activity of IKCa channels was readily detected and the probability of channel openings was resistant to stimulation by diazoxide or suppression by verruculogen. Furthermore, this probability was increased by 5,6-dichloro-1-ethyl-1,3-dihydro-2H-benzimidazol-2-one or 9-phenanthrol and reduced by TRAM-34. The channel-opening probability decreased in RA-induced differentiated cells, whereas the single-channel conductance of IKCa channels did not differ between undifferentiated and differentiated cells. Moreover, the slow component of the mean closed time in these channels was significantly shorter in undifferentiated cells than in differentiated cells; however, the mean open time in the channel remained unchanged as cells were differentiated. Conclusion: RA-induced differentiation in neurons could exert a suppressive effect on the activity of IKCa channels.
机译:背景/目的:中间体电导钙激活K +(IKCa; KCa3.1或KCNN4)信道影响中枢神经元包括运动神经元的行为。通过神经元分化有关,这些通道的活性的机制在很大程度上仍然不清楚。方法:通过使用各种分子生物学工具和电生理学测量中,我们调查IKCa通道的活性的可能变化中视黄酸(RA)诱导的分化过程中的运动神经元样NSC-34细胞。结果:大大减少作为NSC-34细胞KCa3.1的蛋白质和信使RNA的表达用低血清(1%)和1μMRA分化。在全细胞电流记录,从分化的细胞获得的延迟整流K +电流的密度升高。然而,这是为了堵塞敏感由1斜坡脉冲诱发K +电流的密度 - ((2-氯苯基)(二苯基)甲基)-1H-吡唑(TRAM-34)IKCa的-an抑制剂通道-是显著更高在未分化的NSC-34细胞中比在分化的细胞。在未分化的细胞,IKCa通道的活性,容易地检测和通道开口的概率是通过二氮嗪或抑制刺激抵抗verruculogen。此外,这种概率增加了5,6-二氯-1-乙基-1,3-二氢-2H-苯并咪唑-2-酮或9-菲酚和TRAM-34减少。信道开放概率在RA诱导的分化的细胞下降,而IKCa通道的单通道电导没有未分化的和分化的细胞不同。此外,在这些信道的平均闭合时间慢组分是在未分化的细胞中比在分化的细胞显著短;然而,在通道的平均开放时间维持不变,因为细胞分化。结论:RA诱导分化的神经元可能会对IKCa通道的活性有抑制作用。

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