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Distinct subunit contributions to the activation of M-type potassium channels by PI(4,5)P2

机译:不同的亚基对PI(4,5)P2激活M型钾通道的贡献

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Low-threshold voltage-gated M-type potassium channels (M channels) are tetraheteromers, commonly of two Kv7.2 and two Kv7.3 subunits. Though gated by voltage, the channels have an absolute requirement for binding of the membrane phospholipid phosphatidylinositol-4,5-bisphosphate (PI(4,5)P2) to open. We have investigated the quantitative relation between the concentration of a water-soluble PI(4,5)P2 analog, dioctanoyl-PI(4,5)P2 (DiC8-PI(4,5)P2), and channel open probability ( P open) by fast application of increasing concentrations of DiC8-PI(4,5)P2 to the inside face of membrane patches excised from Chinese hamster ovary cells expressing M channels as heteromeric Kv7.2/7.3 subunits. The rationale for the experiments is that this will mimic the effect of changes in membrane PI(4,5)P2 concentration. Single-channel conductances from channel current–voltage relations in cell-attached mode were 9.2 ± 0.1 pS with a 2.5-mM pipette [K+]. Plots of P open against DiC8-PI(4,5)P2 concentration were best fitted using a two-component concentration– P open relationship with high and low affinity, half-maximal effective concentration ( EC 50) values of 1.3 ± 0.14 and 75.5 ± 2.5 μM, respectively, and Hill slopes of 1.4 ± 0.06. In contrast, homomeric channels from cells expressing only Kv7.2 or Kv7.3 constructs yielded single-component curves with EC 50 values of 76.2 ± 19.9 or 3.6 ± 1.0 μM, respectively. When wild-type (WT) Kv7.2 was coexpressed with a mutated Kv7.3 subunit with 100-fold reduced sensitivity to PI(4,5)P2, the high-affinity component of the activation curve was lost. Fitting the data for WT and mutant channels to an activation mechanism with independent PI(4,5)P2 binding to two Kv7.2 and two Kv7.3 subunits suggests that the two components of the M-channel activation curve correspond to the interaction of PI(4,5)P2 with the Kv7.3 and Kv7.2 subunits, respectively, that channels can open when only the two Kv7.3 subunits have bound DiC8-PI(4,5)P2, and that maximum channel opening requires binding to all four subunits.
机译:低阈值电压门控M型钾通道(M通道)是四聚体,通常具有两个Kv7.2和两个Kv7.3亚基。尽管通过电压门控,但通道对于将膜磷脂磷脂酰肌醇-4,5-双磷酸酯(PI(4,5)P2)结合以打开是绝对必要的。我们研究了水溶性PI(4,5)P2类似物,二辛酰基-PI(4,5)P2(DiC8-PI(4,5)P2)和通道打开概率(P开放),将快速增加浓度的DiC8-PI(4,5)P2应用于从中国仓鼠卵巢细胞中切下的膜片的内表面,该膜表达M通道为Kv7.2 / 7.3亚基。实验的基本原理是,这将模拟膜PI(4,5)P2浓度变化的影响。在细胞附着模式下,由通道电流-电压关系产生的单通道电导为2.5 mM移液器[K +],为9.2±0.1 pS。最好使用两组分浓度对P开针对DiC8-PI(4,5)P2浓度的图进行拟合–高和低亲和力,半最大有效浓度(EC 50)值为1.3±0.14和75.5的P开关系分别为±2.5μM和Hill斜率1.4±0.06。相反,来自仅表达Kv7.2或Kv7.3构建体的细胞的同源通道产生的单组分曲线的EC 50值分别为76.2±19.9或3.6±1.0μM。当野生型(WT)Kv7.2与突变的Kv7.3亚基共表达时,其对PI(4,5)P2的敏感性降低了100倍以上,激活曲线的高亲和力成分丢失了。将WT和突变通道的数据拟合到具有独立PI(4,5)P2结合两个Kv7.2和两个Kv7.3亚基的激活机制表明,M通道激活曲线的两个分量对应于PI(4,5)P2分别具有Kv7.3和Kv7.2亚基,只有两个Kv7.3亚基结合DiC8-PI(4,5)P2时,通道才能打开,并且最大通道打开需要绑定到所有四个亚基。

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