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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effect of current direction and K~+ on polarization of the frog gastric mucosa proton pump
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Effect of current direction and K~+ on polarization of the frog gastric mucosa proton pump

机译:电流方向和K〜+对青蛙胃粘膜质子泵极化的影响

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摘要

When current was sent from serosa (S) to mucosa (M) across the frog stomach, there was a polarization (POL) of the open circuit potential (OCPD). POL was not affected by NaCl-free solutions, but was decreased by inhibitors of the H+ pump. In present experiments, current was sent to clamp the PD (VC) across the mucosa in steps of 20 mV up to 100 mV below the control OCPD, that is, current was sent from M to S. All experiments were performed in NaCl-free solutions. The POL was expressed as a % of the difference between the VC PD and the control OCPD. In 4 mM K+ control solutions, the POL was 11.8%; with 10?3 M omeprazole (H+/K+ pump inhibitor), 1.1; with 10?5 M SCH 28080 (H+/K+ pump inhibitor), 3.6; with 10?3 M famotidine (H2 blocker), 1.6; and with 10?2 M M SCN?, 25.4 (inhibition of H+ sec, but not of the pump); in 79 mM K+ control solutions, 26.2; with 10?3 M omeprazole, 4.2; with 10?5 M SCH 28080, 15.9; with 10?3 M famotidine, 5.6; and with 10?2 M SCN?, 29.9. POL was higher in high K+ than in low K+ solutions contrary to what was observed in previous experiments with current sent from S to M. Results are explained on the basis of an electrogenic H+/K+-ATPase pump which includes a H+ channel, permeable to K+. With high K+ solutions, K+ is driven through the H+ channel onto the antiporter (ATPase) when current is sent from M to S, resulting in a greater POL of the pump.
机译:当电流从浆膜(S)穿过青蛙胃到达粘膜(M)时,开路电势(OCPD)发生极化(POL)。 POL不受无NaCl溶液的影响,但受H +泵抑制剂的影响而降低。在目前的实验中,以低于对照OCPD的20 mV至100 mV的步长发送电流,以将PD(VC)夹在粘膜上,也就是说,电流从M传输到S。所有实验均在无NaCl的条件下进行解决方案。 POL表示为VC PD与对照OCPD之差的百分比。在4 mM K +对照溶液中,POL为11.8%;用10?3 M奥美拉唑(H + / K +泵抑制剂),1.1;用10?5 M SCH 28080(H + / K +泵抑制剂),3.6;具有10?3 M法莫替丁(H2受体阻滞剂),1.6; 10 2 M M SCN 2为25.4(抑制H + sec,但不抑制泵);在79 mM K +对照溶液中为26.2;用10?3 M奥美拉唑,4.2;带有10?5 M SCH 28080,15.9;用10?3 M法莫替丁,5.6;和10?2 M SCN?,29.9。与以前的实验(从S到M的电流)观察到的结果相反,高K +溶液中的POL高于低K +溶液。基于带电的H + / K + -ATPase泵进行解释,结果包括K +。对于高K +解决方案,当电流从M传输到S时,K +通过H +通道被驱动到反向转运蛋白(ATPase),从而导致泵的POL更大。

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