首页> 外文期刊>Pflügers Archiv European Journal of Physiology >Large-conductance calcium-dependent potassium channels prevent dendritic excitability in neocortical pyramidal neurons
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Large-conductance calcium-dependent potassium channels prevent dendritic excitability in neocortical pyramidal neurons

机译:大电导的钙依赖性钾通道可防止新皮质锥体神经元的树突兴奋性。

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摘要

Large-conductance calcium-dependent potassium channels (BK channels) are homogeneously distributed along the somatodendritic axis of layer 5 pyramidal neurons of the rat somatosensory cortex. The relevance of this conductance for dendritic calcium electrogenesis was studied in acute brain slices using somatodendritic patch clamp recordings and calcium imaging. BK channel activation reduces the occurrence of dendritic calcium spikes. This is reflected in an increased critical frequency of somatic spikes necessary to activate the distal initiation zone. Whilst BK channels repolarise the somatic spike, they dampen it only in the distal dendrite. Their activation reduces dendritic calcium influx via glutamate receptors. Furthermore, they prevent dendritic calcium electrogenesis and subsequent somatic burst discharges. However, the time window for coincident somatic action potential and dendritic input to elicit dendritic calcium events is not influenced by BK channels. Thus, BK channel activation in layer 5 pyramidal neurons affects cellular excitability primarily by establishing a high threshold at the distal action potential initiation zone. Keywords BK channels - Neocortical pyramidal neurons - Dendrite - Critical frequency - Rat - Calcium-dependent potassium channels - Calcium action potential - Pyramidal neuron - Sensorimotor cortex
机译:大电导的钙依赖性钾通道(BK通道)沿大鼠体感皮层的第5层锥体神经元的体树突状轴均匀分布。使用体树突状膜片钳记录和钙成像研究了急性脑切片中该电导率与树突状钙电生成的相关性。 BK通道激活减少了树突状钙尖峰的发生。这反映为激活远端起始区所必需的体细胞峰值频率增加。虽然BK通道使体细胞尖峰重新极化,但它们仅在远侧树突中衰减它。它们的活化减少了通过谷氨酸受体的树突钙流入。此外,它们还防止树突状钙的电生成和随后的体细胞爆裂放电。然而,同时发生的体细胞动作电位和树突输入引发树突钙事件的时间窗口不受BK通道的影响。因此,第5层锥体神经元中的BK通道激活主要通过在远侧动作电位起始区域建立高阈值来影响细胞兴奋性。关键词BK通道-新皮质锥体神经元-树突-临界频率-大鼠-钙依赖性钾通道-钙动作电位-锥体神经元-感觉运动皮层

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