Ullrich Susanne, Su Jiping, Ranta Felicia, Wittekindt Oliver H, Ris Frederic, Rösler Martin, Gerlach Uwe, Heitzmann Dirk, Warth Richard, Lang Florian
Institute of Neurophysiology, University of Köln, Robert Koch Strasse 39, 50931 Cologne, Germany.
Pflugers Arch. 2005 Dec;451(3):428-36. doi: 10.1007/s00424-005-1479-2. Epub 2005 Aug 30.
Potassium channels regulate insulin secretion. The closure of K(ATP) channels leads to membrane depolarisation, which triggers Ca(2+) influx and stimulates insulin secretion. The subsequent activation of K(+) channels terminates secretion. We examined whether KCNQ1 channels are expressed in pancreatic beta-cells and analysed their functional role. Using RT/PCR cellular mRNA of KCNQ1 but not of KCNE1 channels was detected in INS-1 cells. Effects of two sulfonamide analogues, 293B and HMR1556, inhibitors of KCNQ1 channels, were examined on voltage-activated outwardly rectifying K(+) currents using the patch-clamp method. It was found that 293B inhibited 60% of whole-cell outward currents induced by voltage pulses from -70 to +50 mV with a concentration for half-maximal inhibition (IC(50)) of 37 microM. The other sulfonamide analogue HMR1556 inhibited 48% of the outward current with an IC(50) of 7 microM. The chromanol 293B had no effect on tolbutamide-sensitive K(ATP) channels. Action potentials induced by current injections were broadened and after-repolarisation was attenuated by 293B. Insulin secretion in the presence but not in the absence of tolbutamide was significantly increased by 293B. These results suggest that 293B- and HMR1556-sensitive channels, probably in concert with other voltage-activated K(+) channels, influence action potential duration and frequency and thus insulin secretion.
钾通道调节胰岛素分泌。ATP敏感性钾通道(K(ATP)通道)的关闭导致膜去极化,进而触发钙离子内流并刺激胰岛素分泌。随后钾通道的激活终止分泌。我们研究了KCNQ1通道是否在胰腺β细胞中表达,并分析了它们的功能作用。使用RT/PCR在INS-1细胞中检测到KCNQ1通道的细胞mRNA,但未检测到KCNE1通道的mRNA。使用膜片钳方法研究了两种磺酰胺类似物293B和HMR1556(KCNQ1通道抑制剂)对电压激活的外向整流钾电流的影响。发现293B抑制了由-70至+50 mV电压脉冲诱导的全细胞外向电流的60%,其半数最大抑制浓度(IC(50))为37 microM。另一种磺酰胺类似物HMR1556抑制了48%的外向电流,IC(50)为7 microM。色满醇293B对甲苯磺丁脲敏感的K(ATP)通道没有影响。293B使电流注入诱导的动作电位变宽,复极化后电位减弱。在有甲苯磺丁脲存在但无甲苯磺丁脲时,293B均显著增加胰岛素分泌。这些结果表明,293B和HMR1556敏感的通道可能与其他电压激活的钾通道协同作用,影响动作电位的持续时间和频率,从而影响胰岛素分泌。