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首页> 外文期刊>The Journal of Physiology >Ether-a-go-go-related gene K+ channels contribute to threshold excitability of mouse auditory brainstem neurons.
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Ether-a-go-go-related gene K+ channels contribute to threshold excitability of mouse auditory brainstem neurons.

机译:以太相关基因K +通道有助于小鼠听觉脑干神经元的阈值兴奋性。

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The ionic basis of excitability requires identification and characterisation of expressed channels and their specific roles in native neurons. We have exploited principal neurons of the medial nucleus of the trapezoid body (MNTB) as a model system for examining voltage-gated K(+) channels, because of their known function and simple morphology. Here we show that channels of the ether-a-go-go-related gene family (ERG, Kv11; encoded by kcnh) complement Kv1 channels in regulating neuronal excitability around threshold voltages. Using whole-cell patch clamp from brainstem slices, the selective ERG antagonist E-4031 reduced action potential (AP) threshold and increased firing on depolarisation. In P12 mice, under voltage-clamp with elevated [K(+)](o) (20 mm), a slowly deactivating current was blocked by E-4031 or terfenadine (V(0.5,act) = -58.4 +/- 0.9 mV, V(0.5,inact) = -76.1 +/- 3.6 mV). Deactivation followed a double exponential time course (tau(slow) = 113.8 +/- 6.9 ms, tau(fast) = 33.2 +/- 3.8 ms at -110 mV, tau(fast) 46% peak amplitude). In P25 mice, deactivation was best fitted by a single exponential (tau(fast) = 46.8 +/- 5.8 ms at -110 mV). Quantitative RT-PCR showed that ERG1 and ERG3 were the predominant mRNAs and immunohistochemistry showed expression as somatic plasma membrane puncta on principal neurons. We conclude that ERG currents complement Kv1 currents in limiting AP firing at around threshold; ERG may have a particular role during periods of high activity when [K(+)](o) is elevated. These ERG currents suggest a potential link between auditory hyperexcitability and acoustic startle triggering of cardiac events in familial LQT2.
机译:兴奋性的离子基础要求对表达的通道及其在天然神经元中的特定作用进行鉴定和表征。我们利用梯形体内侧核(MNTB)的主要神经元作为检查电压门控K(+)通道的模型系统,因为它们的功能已知且形态简单。在这里,我们显示了一个以太相关基因家族的通道(ERG,Kv11;由kcnh编码)在调节阈值电压附近的神经元兴奋性时补充了Kv1通道。使用脑干切片的全细胞膜片钳,选择性ERG拮抗剂E-4031降低了动作电位(AP)阈值,并提高了去极化时的放电。在P12小鼠中,在[K(+)](o)(20 mm)升高的电压钳下,缓慢失活的电流被E-4031或terfenadine阻断(V(0.5,act)= -58.4 +/- 0.9 mV,V(0.5,无效)=-76.1 +/- 3.6mV)。在双指数时间过程中失活(tau(慢)= 113.8 +/- 6.9 ms,tau(快)= 33.2 +/- 3.8 ms在-110 mV,tau(快)46%峰值幅度)。在P25小鼠中,失活最好通过单个指数拟合(在-110 mV下,tau(快速)= 46.8 +/- 5.8 ms)。定量RT-PCR显示ERG1和ERG3是主要的mRNA,免疫组织化学显示在主要神经元上以体细胞质膜点的形式表达。我们得出结论,ERG电流补充了Kv1电流,从而将AP发射限制在阈值附近。当[K(+)](o)升高时,ERG可能在活跃期间发挥特殊作用。这些ERG电流表明,家族性LQT2的听觉过度兴奋与心脏事件的声音惊吓触发之间存在潜在的联系。

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