首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Modulation of the Voltage-gated Potassium Channel (Kv4.3) and the Auxiliary Protein (KChIP3) Interactions by the Current Activator NS5806
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Modulation of the Voltage-gated Potassium Channel (Kv4.3) and the Auxiliary Protein (KChIP3) Interactions by the Current Activator NS5806

机译:通过电流激活剂NS5806调节电压门控钾通道(Kv4.3)和辅助蛋白(KChIP3)相互作用

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摘要

KChIP3 (potassium channel interacting protein 3) is a calcium-binding protein that binds at the N terminus of the Kv4 voltage-gated potassium channel through interactions at two contact sites and has been shown to regulate potassium current gating kinetics as well as channel trafficking in cardiac and neuronal cells. Using fluorescence spectroscopy, isothermal calorimetry, and docking simulations we show that the novel potassium current activator, NS5806, binds at a hydrophobic site on the C terminus of KChIP3 in a calcium-dependent manner, with an equilibrium dissociation constant of 2–5 μm in the calcium-bound form. We further determined that the association between KChIP3 and the hydrophobic N terminus of Kv4.3 is calcium-dependent, with an equilibrium dissociation constant in the apo-state of 70 ± 3 μm and 2.7 ± 0.1 μm in the calcium-bound form. NS5806 increases the affinity between KChIP3 and the N terminus of Kv4.3 (Kd = 1.9 ± 0.1 μm) in the presence and absence of calcium. Mutation of Tyr-174 or Phe-218 on KChIP3 abolished the enhancement of Kv4.3 site 1 binding in the apo-state, highlighting the role of these residues in drug and K4.3 binding. Kinetic studies show that NS5806 decreases the rate of dissociation between KChIP3 and the N terminus of KV4.3. Overall, these studies support the idea that NS5806 directly interacts with KChIP3 and modulates the interactions between this calcium-binding protein and the T1 domain of the Kv4.3 channels through reorientation of helix 10 on KChIP3.
机译:KChIP3(钾通道相互作用蛋白3)是一种钙结合蛋白,通过两个接触位点的相互作用在Kv4电压门控钾离子通道的N末端结合,并已显示出调节钾电流门控动力学和通道运输的功能。心脏和神经元细胞。使用荧光光谱法,等温量热法和对接模拟,我们发现新型钾电流激活剂NS5806以钙依赖性方式结合在KChIP3 C末端的疏水位点上,其平衡解离常数为2–5μm。钙结合形式。我们进一步确定,KChIP3和Kv4.3的疏水性N末端之间的缔合是钙依赖性的,在apo态的平衡解离常数为70±3μm,以钙结合形式为2.7±0.1μm。在有钙和无钙的情况下,NS5806均可增加KChIP3和Kv4.3的N末端(Kd = 1.9±0.1μm)之间的亲和力。 KChIP3上Tyr-174或Phe-218的突变消除了载脂蛋白状态下Kv4.3位点1结合的增强,突出了这些残基在药物和K4.3结合中的作用。动力学研究表明,NS5806降低了KChIP3和KV4.3的N末端之间的解离速率。总体而言,这些研究支持以下想法:NS5806与KChIP3直接相互作用,并通过KChIP3上的螺旋10重新定向来调节该钙结合蛋白与Kv4.3通道的T1域之间的相互作用。

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