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首页> 外文期刊>Journal of Neurophysiology >Effects of compounds that influence IK (KCNN4) channels on afterhyperpolarizing potentials, and determination of IK channel sequence, in guinea pig enteric neurons.
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Effects of compounds that influence IK (KCNN4) channels on afterhyperpolarizing potentials, and determination of IK channel sequence, in guinea pig enteric neurons.

机译:影响IK(KCNN4)通道的化合物对豚鼠肠神经元超极化后电位的影响以及IK通道序列的确定。

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摘要

The late afterhyperpolarizing potential (AHP) that follows the action potential in intrinsic primary afferent neurons of the gastrointestinal tract has a profound influence on their firing patterns. There has been uncertainty about the identity of the channels that carry the late AHP current, especially in guinea pigs, where the majority of the physiological studies have been made. In the present work, the late AHP was recorded with intracellular microelectrodes from myenteric neurons in the guinea pig small intestine. mRNA was extracted from the ganglia to determine the identity of the guinea pig intermediate conductance potassium (I(K)) channel gene transcript. The late AHP was inhibited by two blockers of I(K) channels, TRAM34 (0.1-1 microM) and clotrimazole (10 microM), and was enhanced by the potentiator of the opening of these channels, DC-EBIO (100 nM). Action potential characteristics were unchanged by TRAM34 or DC-EBIO. The full sequence of the gene transcript and the deduced amino acid sequence were determined from extracts including myenteric ganglia and from bladder urothelium, which is a rich source of I(K) channel mRNA. This showed that the guinea pig sequence has a high degree of homology with other mammalian sequences but that the guinea pig channel lacks a phosphorylation site that was thought to be critical for channel regulation. It is concluded that the channels that carry the current of the late afterhyperpolarizing potential in guinea pig enteric neurons are I(K) channels.
机译:在胃肠道内在的初级传入神经元中,跟随动作电位的晚期超极化后电位(AHP)对它们的放电方式有深远的影响。关于携带晚期AHP电流的通道的身份存在不确定性,尤其是在豚鼠中,大多数生理研究已经完成。在目前的工作中,用豚鼠小肠肌层神经元的细胞内微电极记录了晚期AHP。从神经节中提取mRNA,以确定豚鼠中间电导钾(I(K))通道基因转录物的身份。晚期AHP被I(K)通道的两种阻滞剂TRAM34(0.1-1 microM)和克霉唑(10 microM)抑制,并且通过打开这些通道的增强剂DC-EBIO(100 nM)得以增强。 TRAM34或DC-EBIO的动作电位特性保持不变。从包括肌间神经节在内的提取物中和膀胱尿路上皮中确定基因转录本的完整序列和推导的氨基酸序列,膀胱上皮是I(K)通道mRNA的丰富来源。这表明豚鼠序列与其他哺乳动物序列具有高度同源性,但是豚鼠通道缺少磷酸化位点,该位点被认为对通道调节至关重要。结论是,在豚鼠肠道神经元中,具有超极化后晚期电流的通道是I(K)通道。

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