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The Basal Thermal Sensitivity of the TRPV1 Ion Channel Is Determined by PKCβII

机译:TRPV1离子通道的基础热敏性由PKCβII确定

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摘要

Peripheral nociceptors are excited by the activation of membrane receptors and ion channels. The heat-sensitive TRPV1 ion channel responds to various noxious chemical and thermal stimuli, causing pain and itch. Here, we show that TRPV1 is coexpressed with PKCβII in a subset of mouse sensory neurons and that, in these neurons, TRPV1 binds directly to PKCβII, leading to the activation and translocation of PKCβII. Activated PKCβII, in turn, significantly increases the responsiveness of TRPV1 by phosphorylating Thr705. The heat sensitivity of TRPV1 is almost eliminated by either knocking down PKCβII or mutating Thr705; however, neither of these manipulations affects the potentiation of TRPV1 caused by the activation of PKCε. PKCβII thus acts as an auxiliary subunit of TRPV1 by forming a population-dependent TRPV1 ion channel complex controlling the sensitivity of TRPV1 and setting the threshold for pain and itch.
机译:周围伤害感受器被膜受体和离子通道的激活所激发。热敏TRPV1离子通道对各种有害的化学和热刺激有反应,从而引起疼痛和瘙痒。在这里,我们显示TRPV1与PKCβII在小鼠感觉神经元的子集中共表达,并且在这些神经元中,TRPV1直接与PKCβII结合,从而导致PKCβII的激活和易位。活化的PKCβII继而通过磷酸化Thr705显着增加TRPV1的响应性。通过敲低PKCβII或突变Thr705,几乎消除了TRPV1的热敏感性。然而,这些操作均不影响由PKCε激活引起的TRPV1的增强。因此,PKCβII通过形成控制TRPV1敏感性并设定疼痛和瘙痒阈值的群体依赖性TRPV1离子通道复合物而充当TRPV1的辅助亚基。

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