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首页> 外文期刊>American Journal of Physiology >Metabolic inhibition impairs ATP-sensitive K+ channel block by sulfonylurea in pancreatic beta-cells.
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Metabolic inhibition impairs ATP-sensitive K+ channel block by sulfonylurea in pancreatic beta-cells.

机译:代谢抑制作用会损害磺酰脲在胰腺β细胞中的ATP敏感性K +通道阻滞。

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The effect of metabolic inhibition on the blocking of beta-cell ATP-sensitive K+ channels (KATP channels) by glibenclamide was investigated using a patch-clamp technique. Inhibition of KATP channels by glibenclamide was attenuated in the cell-attached mode under metabolic inhibition induced by 2,4-dinitrophenol. Under a low concentration (0.1 microM) of ATP applied in the inside-out mode, KATP channel activity was not fully abolished, even when a high dose of glibenclamide was applied, in contrast to the dose-dependent and complete KATP channel inhibition under 10 microM ATP. On the other hand, cibenzoline, a class Ia antiarrhythmic agent, inhibits KATP channel activity in a dose-dependent manner and completely blocks it, even under metabolic inhibition. In sulfonylurea receptor (SUR1)- and inward rectifier K+ channel (Kir6.2)-expressed proteins, cibenzoline binds directly to Kir6.2, unlike glibenclamide. Thus, KATP channel inhibition by glibenclamide is impaired under the condition of decreased intracellular ATP in pancreatic beta-cells, probably because of a defect in signal transmission between SUR1 and Kir6.2 downstream of the site of sulfonylurea binding to SUR1.
机译:使用膜片钳技术研究了新陈代谢抑制对格列本脲对β细胞ATP敏感性K +通道(KATP通道)的阻断作用。在2,4-二硝基苯酚诱导的代谢抑制下,格列本脲对KATP通道的抑制作用在细胞附着模式下减弱。在由内而外的模式中使用低浓度(0.1 microM)的ATP的情况下,即使在使用高剂量的格列本脲的情况下,KATP通道的活性也无法完全消除,这与剂量依赖性和完全的KATP通道在10以下的抑制作用相反microM ATP。另一方面,cialineline(Ia类抗心律不齐药物)以剂量依赖性方式抑制KATP通道活性,即使在代谢抑制下也完全阻断KATP通道活性。在磺酰脲受体(SUR1)-和向内整流子K +通道(Kir6.2)表达的蛋白中,与格列本脲不同,cibenzoline直接与Kir6.2结合。因此,在胰岛β细胞中细胞内ATP降低的情况下,格列本脲对KATP通道的抑制作用会减弱,这可能是由于磺酰脲与SUR1结合位点下游SUR1和Kir6.2之间信号传递的缺陷。

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