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Ca2+-Calmodulin and PIP2 interactions at the proximal C-terminus of Kv7 channels

机译:在Kv7通道近端C末端的Ca2 +-钙调蛋白和PIP2相互作用

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摘要

In the heart, co-assembly of Kv7.1 with KCNE1 produces the slow IKS potassium current, which repolarizes the cardiac action potential and mutations in human Kv7.1 and KCNE1 genes cause cardiac arrhythmias. The proximal Kv7.1 C-terminus binds calmodulin (CaM) and phosphatidylinositol-4,5-bisphosphate (PIP2) and recently we revealed the competition of PIP2 with the calcified CaM N-lobe to a previously unidentified site in Kv7.1 helix B, also known to harbor a LQT mutation. Data indicated that PIP2 and Ca2+-CaM perform the same function on IKS channel gating to stabilize the channel open state. Here we show that similar features were observed for Kv7.1 currents expressed alone. We also find that conservation of homologous residues in helix B of other Kv7 subtypes confer similar competition of Ca2+-CaM with PIP2 binding to their proximal C-termini and suggest that PIP2-CaM interactions converge to Kv7 helix B to modulates channel activity in a Kv7 subtype-dependent manner.
机译:在心脏中,Kv7.1与KCNE1的共同组装产生缓慢的IKS钾电流,这使心脏动作电位重新极化,人Kv7.1和KCNE1基因的突变会导致心律不齐。近端Kv7.1 C末端结合钙调蛋白(CaM)和磷脂酰肌醇-4,5-双磷酸酯(PIP2),最近,我们揭示了钙化的CaM N瓣与PIP2竞争于Kv7.1螺旋B中以前未知的位点也称为LQT突变。数据表明,PIP2和Ca2 + -CaM对IKS通道门控执行相同的功能,以稳定通道打开状态。在这里,我们表明,对于单独表达的Kv7.1电流,观察到了相似的特征。我们还发现,其他Kv7亚型的螺旋B中的同源残基的保守性赋予Ca2 + -CaM类似竞争,其中PIP2与其近端C末端结合,并且表明PIP2-CaM相互作用会聚到Kv7螺旋B,从而调节Kv7中的通道活性亚型依赖方式。

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