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Dynamic interaction between sigma-1 receptor and Kv1.2 shapes neuronal and behavioral responses to cocaine

机译:sigma-1受体和Kv1.2之间的动态相互作用塑造了可卡因的神经元和行为反应

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摘要

The sigma-1 receptor (Sig-1R), an endoplasmic reticulum (ER) chaperone protein, is an interorganelle signaling modulator that potentially plays a role in drug-seeking behaviors. However, the brain site of action and underlying cellular mechanisms remain unidentified. We found that cocaine exposure triggers a Sig-1R-dependent upregulation of D-type K~+ current in the nucleus accumbens (NAc) that results in neuronal hypoactivity and thereby enhances behavioral cocaine response. Combining ex vivo and in vitro studies, we demonstrated that this neuroadaptation is caused by a persistent protein-protein association between Sig-1Rs and Kv1.2 channels, a phenomenon that is associated to a redistribution of both proteins from intracellular compartments to the plasma membrane. In conclusion, the dynamic Sig-1R-Kv1.2 complex represents a mechanism that shapes neuronal and behavioral response to cocaine. Functional consequences of Sig-1R binding to K~+ channels may have implications for other chronic diseases where maladaptive intrinsic plasticity and Sig-1Rs are engaged.
机译:sigma-1受体(Sig-1R)是一种内质网(ER)伴侣蛋白,是一种细胞间信号传导调节剂,可能在药物寻找行为中发挥作用。但是,大脑的作用部位和潜在的细胞机制仍然不清楚。我们发现可卡因暴露触发伏伏核(NAc)中D型K〜+电流的Sig-1R依赖性上调,导致神经元功能减退,从而增强行为可卡因反应。结合离体和体外研究,我们证明了这种神经适应是由Sig-1R和Kv1.2通道之间的持久蛋白质-蛋白质结合引起的,这种现象与两种蛋白质从细胞内区室到质膜的重新分布有关。总之,动态的Sig-1R-Kv1.2复合物代表了一种机制,可塑造对可卡因的神经元和行为反应。 Sig-1R与K +通道结合的功能后果可能与其他适应不良的内在可塑性和Sig-1R参与的慢性疾病有关。

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