首页> 美国卫生研究院文献>The Journal of Physiology >Phosphatidylinositol-45-bisphosphate (PIP2) regulation of strong inward rectifier Kir2.1 channels: multilevel positive cooperativity
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Phosphatidylinositol-45-bisphosphate (PIP2) regulation of strong inward rectifier Kir2.1 channels: multilevel positive cooperativity

机译:强大的内向整流器Kir2.1通道的磷脂酰肌醇-45-二磷酸(PIP2)调节:多级正合作性

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摘要

Inwardly rectifying potassium (Kir) channels are gated by the interaction of their cytoplasmic regions with membrane-bound phosphatidylinositol-4,5-bisphosphate (PIP2). In the present study, we examined how PIP2 interaction regulates channel availability and channel openings to various subconductance levels (sublevels) as well as the fully open state in the strong inward rectifier Kir2.1 channel. Various Kir2.1 channel constructs were expressed in Xenopus oocytes and single channel or macroscopic currents were recorded from inside-out patches. The wild-type (WT) channel rarely visited the subconductance levels under control conditions. However, upon reducing Kir2.1 channel interaction with PIP2 by a variety of interventions, including PIP2 antibodies, screening PIP2 with neomycin, or mutating PIP2 binding sites (e.g. K188Q), visitation to the sublevels was markedly increased before channels were converted to an unavailable mode in which they did not open. No channel activity was detected in channels with the double mutation K188A/R189A, a mutant which exhibits extremely weak interaction with PIP2. By linking subunits together in tandem dimers or tetramers containing mixtures of WT and K188A/R189A subunits, we demonstrate that one functional PIP2-interacting WT subunit is sufficient to convert channels from the unavailable to the available mode with a high open probability dominated by the fully open state, with similar kinetics as tetrameric WT channels. Occasional openings to sublevels become progressively less frequent as the number of WT subunits increases. Quantitative analysis reveals that the interaction of PIP2 with WT subunits exerts strong positive cooperativity in both converting the channels from the unavailable to the available mode, and in promoting the fully open state over sublevels. We conclude that the interaction of PIP2 with only one Kir2.1 subunit is sufficient for the channel to become available and to open to its full conductance state. Interaction with additional subunits exerts positive cooperativity at multiple levels to further enhance channel availability and promote the fully open state.
机译:向内整流的钾离子通道通过其胞质区与膜结合的磷脂酰肌醇-4,5-双磷酸酯(PIP2)的相互作用来封闭。在本研究中,我们研究了PIP2交互作用如何将通道可用性和通道开口调节到各种亚电导水平(sublevels)以及强向内整流器Kir2.1通道中的完全打开状态。在非洲爪蟾卵母细胞中表达了各种Kir2.1通道构建体,并记录了由内而外的斑块的单通道或宏观电流。在控制条件下,野生型(WT)通道很少访问子传导水平。但是,通过各种干预措施(包括PIP2抗体,用新霉素筛选PIP2或突变PIP2结合位点(例如K188Q))减少了Kir2.1通道与PIP2的相互作用后,在将通道转换为不可用通道之前,对子级的访问显着增加他们没有打开的模式。在双突变K188A / R189A的通道中未检测到通道活性,该突变体与PIP2的相互作用极弱。通过在包含WT和K188A / R189A亚基混合物的串联二聚体或四聚体中将亚基连接在一起,我们证明了一个与PIP2相互作用的功能性WT亚基足以将通道从不可用模式转换为可用模式,并以完全打开的可能性很高。打开状态,具有与四聚体WT通道相似的动力学。随着WT亚单位数量的增加,偶尔开放给子等级的机会越来越少。定量分析显示,PIP2与WT亚基的相互作用在将通道从不可用模式转换为可用模式方面以及在推动子级别上的完全开放状态方面都发挥了强大的正合作性。我们得出的结论是,PIP2仅与一个Kir2.1亚基的相互作用足以使通道变得可用并打开其完全电导状态。与其他亚基的相互作用在多个层面上发挥了积极的协同作用,以进一步提高渠道可用性并促进完全开放的状态。

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