首页> 外文期刊>The Journal of Physiology >KATP channel formation by the sulphonylurea receptors SUR1 with Kir6.2 subunits in rat dorsal vagal neurons in situ.
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KATP channel formation by the sulphonylurea receptors SUR1 with Kir6.2 subunits in rat dorsal vagal neurons in situ.

机译:磺酰脲受体SUR1与Kir6.2亚基在大鼠背迷走神经元中原位形成KATP通道。

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1. Functional and molecular properties of ATP-sensitive K+ (KATP) channels were studied in dorsal vagal neurons (DVNs) of rat brainstem slices using patch-clamp and single-cell antisense RNA amplification-polymerase chain reaction (PCR) techniques. 2. In the cell-attached configuration, 1 mM cyanide resulted in block of spontaneous firing and concomitant opening of single channels with a mean single open time of 2-3 ms and a burst duration of up to several hundred milliseconds. Inhibition of such single-channel activity with 200 &mgr;M tolbutamide led to the reappearance of spontaneous discharge. 3. Whole-cell recordings during anoxia revealed a hyperpolarization of the DVNs. Harvesting of cytoplasm, antisense RNA amplification and subsequent PCR showed coexpression for single DVNs of mRNA for the sulphonylurea receptor SUR1 isoform and for the inwardly rectifying K+ channel subunit Kir6.2, but not for the SUR2 or Kir6.1 isoforms of these channel/receptor subclasses. 4. Upon anoxia, a stable depolarization by less than 10 mV was observed in non-excitable cells in the dorsal vagal nucleus. These cells, which expressed glial fibrillary acidic protein (GFAP), showed a high level of mRNA for Kir6.2, a weak signal for SUR1, whereas SUR2 or Kir6.1 were not detected. 5. The results suggest that functional KATP channels in DVNs are constituted by the formation of Kir6.2 subunits with SUR1 receptors.
机译:1.使用膜片钳和单细胞反义RNA扩增-聚合酶链反应(PCR)技术研究了大鼠脑干切片背迷走神经元(DVN)中ATP敏感性K +(KATP)通道的功能和分子特性。 2.在与电池相连的配置中,1 mM氰化物导致自发放电并同时打开单个通道,平均单个打开时间为2-3 ms,猝发持续时间高达几百毫秒。用200mg甲苯磺丁酰胺抑制这种单通道活性导致自发放电的重新出现。 3.缺氧期间的全细胞记录显示DVNs超极化。细胞质的收获,反义RNA扩增和随后的PCR显示,对于磺酰脲类受体SUR1亚型和向内整流的K +通道亚基Kir6.2,mRNA的单个DVNs共表达,但对于这些通道/受体的SUR2或Kir6.1亚型则没有共表达。子类。 4.缺氧时,在背迷走神经核中的非兴奋性细胞中观察到稳定的去极化低于10 mV。这些表达胶质纤维酸性蛋白(GFAP)的细胞显示Kir6.2的mRNA水平较高,SUR1的信号较弱,而未检测到SUR2或Kir6.1。 5.结果表明,DVNs中的功能性KATP通道由具有SUR1受体的Kir6.2亚基的形成构成。

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