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Kv7 介导的钾电流对大鼠皮层 II/III 层锥体神经元阈下和阈上反应的贡献。

Contributions of Kv7-mediated potassium current to sub- and suprathreshold responses of rat layer II/III neocortical pyramidal neurons.

机构信息

Department of Anatomy and Neurobiology, University of Tennessee, Memphis, TN 38163, USA.

出版信息

J Neurophysiol. 2011 Oct;106(4):1722-33. doi: 10.1152/jn.00211.2011. Epub 2011 Jun 22.

Abstract

After block of Kv1- and Kv2-mediated K(+) currents in acutely dissociated neocortical pyramidal neurons from layers II/III of rat somatosensory and motor cortex, the remaining current is slowly activating and persistent. We used whole cell voltage clamp to show that the Kv7 blockers linopirdine and XE-991 blocked a current with similar kinetics to the current remaining after combined block of Kv1 and Kv2 channels. This current was sensitive to low doses of linopirdine and activated more slowly and at more negative potentials than Kv1- or Kv2-mediated current. The Kv7-mediated current decreased in amplitude with time in whole cell recordings, but in most cells the current was stable for several minutes. Current in response to a traditional M-current protocol was blocked by muscarine, linopirdine, and XE-991. Whole cell slice recordings revealed that the Q₁₀ for channel deactivation was ∼2.5. Sharp electrode current-clamp recordings from adult pyramidal cells demonstrated that block of Kv7-mediated current with XE-991 reduced rheobase, shortened the latency to firing to near rheobase current, induced more regular firing at low current intensity, and increased the rate of firing to a given current injection. XE-991 did not affect single action potentials or spike frequency adaptation. Application of XE-991 also eliminated subthreshold voltage oscillations and increased gain for low-frequency inputs (<10 Hz) without affecting gain for higher frequency inputs. These data suggest important roles for Kv7 channels in subthreshold regulation of excitability, generation of theta-frequency subthreshold oscillations, regulation of interspike intervals, and biasing selectivity toward higher frequency inputs.

摘要

在急性分离的来自感觉和运动皮层 II/III 层的大鼠新皮层锥体神经元中阻断 Kv1 和 Kv2 介导的 K(+)电流后,剩余电流缓慢激活并持续存在。我们使用全细胞膜片钳技术显示 Kv7 阻断剂 linopirdine 和 XE-991 阻断了一种动力学与 Kv1 和 Kv2 通道联合阻断后剩余电流相似的电流。该电流对低剂量的 linopirdine 敏感,激活速度比 Kv1 或 Kv2 介导的电流更慢,激活电位更正。全细胞膜片钳记录显示,该电流的幅度随时间而减小,但在大多数细胞中,该电流在数分钟内是稳定的。对传统 M 电流方案的响应电流被毒蕈碱、linopirdine 和 XE-991 阻断。全细胞膜片记录显示,通道失活的 Q₁₀ 约为 2.5。来自成年锥体细胞的尖锐电极电流钳记录表明,XE-991 阻断 Kv7 介导的电流会降低基强度,缩短接近基强度电流的放电潜伏期,在低电流强度下诱导更规则的放电,并增加给定电流注入时的放电率。XE-991 不影响单个动作电位或尖峰频率适应。XE-991 的应用还消除了亚阈值电压振荡,并增加了低频(<10 Hz)输入的增益,而不影响高频输入的增益。这些数据表明 Kv7 通道在兴奋性的亚阈值调节、θ 频率亚阈值振荡的产生、尖峰间隔的调节以及偏向更高频率输入的选择性方面发挥着重要作用。

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