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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The TASK-1 two-pore domain K+ channel is a molecular substrate for neuronal effects of inhalation anesthetics.
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The TASK-1 two-pore domain K+ channel is a molecular substrate for neuronal effects of inhalation anesthetics.

机译:TASK-1两孔域K +通道是吸入麻醉药神经元作用的分子底物。

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摘要

Despite widespread use of volatile general anesthetics for well over a century, the mechanisms by which they alter specific CNS functions remain unclear. Here, we present evidence implicating the two-pore domain, pH-sensitive TASK-1 channel as a target for specific, clinically important anesthetic effects in mammalian neurons. In rat somatic motoneurons and locus coeruleus cells, two populations of neurons that express TASK-1 mRNA, inhalation anesthetics activated a neuronal K(+) conductance, causing membrane hyperpolarization and suppressing action potential discharge. These membrane effects occurred at clinically relevant anesthetic levels, with precisely the steep concentration dependence expected for anesthetic effects of these compounds. The native neuronal K(+) current displayed voltage- and time-dependent properties that were identical to those mediated by the open-rectifier TASK-1 channel. Moreover, the neuronal K(+) channel and heterologously expressed TASK-1 were similarly modulated by extracellular pH. The decreased cellular excitability associated with TASK-1 activation in these cell groups probably accounts for specific CNS effects of anesthetics: in motoneurons, it likely contributes to anesthetic-induced immobilization, whereas in the locus coeruleus, it may support analgesic and hypnotic actions attributed to inhibition of those neurons.
机译:尽管挥发性的全身麻醉剂已广泛使用了一个多世纪,但它们改变特定中枢神经系统功能的机制仍不清楚。在这里,我们提供了证据表明牵涉两孔域,pH敏感的TASK-1通道作为哺乳动物神经元中特定的,临床上重要的麻醉作用的靶标。在大鼠体细胞运动神经元和蓝斑轨迹细胞中,两个表达TASK-1 mRNA的神经元群体,吸入麻醉剂激活了神经元K(+)电导,导致膜超极化并抑制动作电位放电。这些膜作用发生在临床上相关的麻醉剂水平上,而这些化合物的麻醉作用恰恰与浓度依赖性密切相关。本地神经元K(+)电流显示出与电压和时间有关的特性,这些特性与开路整流器TASK-1通道介导的特性相同。此外,神经元K(+)通道和异源表达的TASK-1受到细胞外pH的类似调节。这些细胞组中与TASK-1激活相关的细胞兴奋性降低可能是麻醉药对中枢神经系统的特定作用:在运动神经元中,它可能有助于麻醉药诱导的固定化,而在蓝斑中,它可能支持归因于麻醉药的镇痛和催眠作用。抑制那些神经元。

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