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The IClswell inhibitor DCPIB blocks Kir channels that possess weak affinity for PIP2

机译:ICl溶胀抑制剂DCPIB阻断对PIP2具有弱亲和力的Kir通道

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摘要

Inwardly rectifying K+ (Kir) channels are important contributors to the resting membrane potential and regulate cellular excitability. The activity of Kir channels depends critically on the phospholipid PIP2. Several modulators of the activity of Kir channels alter the apparent affinity of the channel to PIP2. Channels with high apparent affinity to PIP2 may not respond to a given modulator, but mutations that decrease such affinity can render the channel susceptible to modulation. Here, we identify a known inhibitor of the swelling-activated Cl current, DCPIB, as an effective inhibitor of a number of Kir channels both in native cardiac cells and in heterologous expression systems. We show that the apparent affinity to PIP2 determines whether DCPIB will serve as an efficient blocker of Kir channels. These effects are consistent with a model in which DCPIB competes with PIP2 for a common binding site.
机译:向内整流K + (Kir)通道是静息膜电位和调节细胞兴奋性的重要因素。 Kir通道的活性主要取决于磷脂PIP2。 Kir通道活性的几种调节剂改变了通道对PIP2的表观亲和力。对PIP2具有高表观亲和力的通道可能不会响应给定的调制器,但是降低此类亲和力的突变可能会使通道容易受到调制。在这里,我们确定了一种已知的溶胀激活的Cl -电流抑制剂DCPIB,作为天然心脏细胞和异源表达系统中许多Kir通道的有效抑制剂。我们表明,对PIP2的表观亲和力决定了DCPIB是否将充当Kir通道的有效阻止者。这些效果与DCPIB与PIP2竞争一个公共结合位点的模型一致。

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