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Phosphatidylinositol (45)-bisphosphate dynamically regulates the K2P background K+ channel TASK-2

机译:磷脂酰肌醇(45)-双磷酸酯动态调节K2P背景K +通道TASK-2

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摘要

Two-pore domain K2P K+ channels responsible for the background K+ conductance and the resting membrane potential, are also finely regulated by a variety of chemical, physical and physiological stimuli. Hormones and transmitters acting through Gq protein-coupled receptors (GqPCRs) modulate the activity of various K2P channels but the signalling involved has remained elusive, in particular whether dynamic regulation by membrane PI(4,5)P2, common among other classes of K+ channels, affects K2P channels is controversial. Here we show that K2P K+ channel TASK-2 requires PI(4,5)P2 for activity, a dependence that accounts for its run down in the absence of intracellular ATP and its full recovery by addition of exogenous PI(4,5)P2, its inhibition by low concentrations of polycation PI scavengers, and inhibition by PI(4,5)P2 depletion from the membrane. Comprehensive mutagenesis suggests that PI(4,5)P2 interaction with TASK-2 takes place at C-terminus where three basic aminoacids are identified as being part of a putative binding site.
机译:两孔域K2P K + 通道负责背景K + 电导和静息膜电位,也可以通过多种化学,物理和生理刺激来精细调节。通过Gq蛋白偶联受体(GqPCR)起作用的激素和递质调节各种K2P通道的活性,但所涉及的信号传递仍然难以捉摸,尤其是膜PI(4,5)P2的动态调节是否在其他类别的K < sup> + 频道,影响K2P频道存在争议。在这里,我们显示K2P K + 通道TASK-2需要PI(4,5)P2才能进行活性,这种依赖性可以解释其在缺乏细胞内ATP的情况下的消耗能力以及通过添加ATP完全恢复的原因。外源性PI(4,5)P2,其对低浓度聚阳离子PI清除剂的抑制作用,以及对PI(4,5)P2的膜耗竭作用的抑制作用。全面的诱变表明PI(4,5)P2与TASK-2的相互作用发生在C末端,在该末端三个基本氨基酸被确定为假定的结合位点的一部分。

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