首页> 外文会议>symposium on The hERG cardiac potassium channel: structure, function, and long QT syndrome >Dynamic control of hERG/I_(Kr) by PKA-mediated interactions with 14-3-3
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Dynamic control of hERG/I_(Kr) by PKA-mediated interactions with 14-3-3

机译:PKA介导的相互作用与14-3-3的动态控制Herg / I_(KR)

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I_(Kr) has been considered the potassium current most responsible for adrenergic/cAMP-mediated changes in cardiac repolarization during stress. Increasing biochemical, electrophysiological and genetic evidence however, points to a role for hERG/I_(Kr) in beta-adrenergic responses. Elevations of cAMP as seen in beta-adrenergic stimulation can result in PKA-dependent phosphorylation of hERG and direct binding of cAMP to the channel protein. Generally, there is a suppression of current density due to the channel phosphorylation. We recently identified a- novel protein-protein interaction between hERG and the adaptor protein 14-3-3e. Interaction sites exist on both N- and C-termini of hERG and the interaction is dynamic, requiring phosphorylation of the channel by PKA. When both sites bind to 14-3-3 proteins there is an acceleration and augmentation of current activation in contrast to the depression of current with phosphorylation alone. When sufficient 14-3-3 is available the phosphorylation state of the channel is stabilized and prolonged. Thus, 14-3-3 interactions with hERG provide a unique mechanism for plasticity in the autonomic control of stress-dependent regulation of cardiac membrane excitability. Here, we summarize our findings and report on our further efforts to analyse interactions between the native channel protein and 14-3-3 in cardiac myocytes.
机译:I_(KR)被认为是最负责肾上腺素能/阵营介导的压力期间心脏复极性变化最负责的钾电流。然而,增加生物化学,电生理和遗传证据,指向β-肾上腺素能反应中的HERG / I_(KR)的作用。如β-肾上腺素能刺激所见的营地的升高可能导致PKA依赖性磷酸化的HERG和CAMP的直接结合到通道蛋白。通常,由于通道磷酸化引起的电流密度抑制。我们最近鉴定了HERG和衔接蛋白14-3-3e之间的一种新的蛋白质 - 蛋白质相互作用。在HERG的N-和C-末端存在相互作用位点,并且相互作用是动态的,需要PKA磷酸化。当两个位点都结合到14-3-3蛋白蛋白时,与单独的磷酸化的电流凹陷相比,当前活化的加速和增强。当足够的14-3-3可用时,通道的磷酸化状态稳定并长时间。因此,14-3-3与HERG的相互作用提供了一种独特的可塑性机制,用于依赖于心膜膜兴奋性的应力依赖性调节的自主控制。在这里,我们总结了我们的研究结果和报告我们进一步努力分析了心肌细胞中的天然通道蛋白和14-3-3之间的相互作用。

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