Department of Pharmacology, Yamagata University School of Medicine, Yamagata 990-9585, Japan.
Department of Pharmacology, Kyoto University Graduate School of Medicine, Kyoto 606-8501, Japan.
Int J Mol Sci. 2018 Jul 10;19(7):2008. doi: 10.3390/ijms19072008.
Extracellular signal-regulated kinase 5 (ERK5) regulates diverse physiological responses such as proliferation, differentiation, and gene expression. Previously, we demonstrated that ERK5 is essential for neurite outgrowth and catecholamine biosynthesis in PC12 cells and sympathetic neurons. However, it remains unclear how ERK5 regulates the activity of ion channels, which are important for membrane excitability. Thus, we examined the effect of ERK5 on the ion channel activity in the PC12 cells that overexpress both ERK5 and the constitutively active MEK5 mutant. The gene and protein expression levels of voltage-dependent Ca and K⁺ channels were determined by RT-qPCR or Western blotting. The A-type K⁺ current was recorded using the whole-cell patch clamp method. In these ERK5-activated cells, the gene expression levels of voltage-dependent L- and P/Q-type Ca channels did not alter, but the N-type Ca channel was slightly reduced. In contrast, those of K4.2 and K4.3, which are components of the A-type current, were significantly enhanced. Unexpectedly, the protein levels of K4.2 were not elevated by ERK5 activation, but the phosphorylation levels were increased by ERK5 activation. By electrophysiological analysis, the inactivation time constant of the A-type current was prolonged by ERK5 activation, without changes in the peak current. Taken together, ERK5 inhibits an inactivation of the A-type current by phosphorylation of K4.2, which may contribute to the neuronal differentiation process.
细胞外信号调节激酶 5(ERK5)调节多种生理反应,如增殖、分化和基因表达。以前,我们证明 ERK5 对于 PC12 细胞和交感神经元中的轴突生长和儿茶酚胺生物合成是必不可少的。然而,ERK5 如何调节离子通道的活性仍然不清楚,离子通道对于膜兴奋性很重要。因此,我们研究了 ERK5 在过度表达 ERK5 和组成型激活 MEK5 突变体的 PC12 细胞中对离子通道活性的影响。通过 RT-qPCR 或 Western blot 测定电压依赖性 Ca 和 K⁺通道的基因和蛋白表达水平。使用全细胞膜片钳方法记录 A 型 K⁺电流。在这些 ERK5 激活的细胞中,电压依赖性 L 和 P/Q 型 Ca 通道的基因表达水平没有改变,但 N 型 Ca 通道略有减少。相比之下,A 型电流的组成部分 K4.2 和 K4.3 的基因表达水平显著增强。出乎意料的是,ERK5 激活并没有导致 K4.2 的蛋白水平升高,而是增加了 K4.2 的磷酸化水平。通过电生理分析,ERK5 激活延长了 A 型电流的失活时间常数,而峰电流没有变化。总之,ERK5 通过磷酸化 K4.2 抑制 A 型电流的失活,这可能有助于神经元分化过程。