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低剂量奎宁靶向KCNH6以增强葡萄糖诱导的胰岛素分泌。

Low-dose quinine targets KCNH6 to potentiate glucose-induced insulin secretion.

作者信息

Xiong Feng-Ran, Zhu Juan-Juan, Zhu Xiao-Rong, Lu Jing, Yang Jin-Kui

机构信息

Department of Endocrinology, Beijing Diabetes Institute, Beijing Key Laboratory of Diabetes Research and Care, Beijing Tongren Hospital, Capital Medical University, Beijing 100730, China.

Laboratory for Clinical Medicine, Capital Medical University, Beijing 100069, China.

出版信息

J Mol Cell Biol. 2025 May 22;16(11). doi: 10.1093/jmcb/mjae051.

Abstract

Insulin secretion is mainly regulated by two electrophysiological events, depolarization initiated by the closure of adenosine triphosphate (ATP)-sensitive K+ (KATP) channels and repolarization mediated by K+ efflux. Quinine, a natural component commonly used for the treatment of malaria, has been reported to directly stimulate insulin release and lead to hypoglycemia in patients during treatment through inhibiting KATP channels. In this study, we verified the insulinotropic effect of quinine on the isolated mouse pancreatic islets. We also revealed that low-dose quinine (<20 μM) did not directly provoke Ca2+ spikes or insulin secretion under low-glucose conditions but potentiated Ca2+ influx and insulin secretion induced by high glucose, which cannot be explained by KATP inhibition. KCNH6 (hERG2) is a voltage-dependent K+ (Kv) channel that plays a critical role in the repolarization of pancreatic β cells. Patch clamp experiments showed that quinine inhibited hERG channels at low micromolar concentrations. However, whether quinine can target KCNH6 to potentiate glucose-induced insulin secretion remains unclear. Here, we showed that in vivo administration of low-dose quinine (25 mg/kg) improved glucose tolerance and increased glucose-induced insulin release in wild-type control mice but not in Kcnh6-β-cell-specific knockout (βKO) mice. Consistently, in vitro treatment of primary islet β cells with low-dose quinine (10 μM) prolonged action potential duration and augmented glucose-induced Ca2+ influx in the wild-type control group but not in the Kcnh6-βKO group. Our results demonstrate that KCNH6 plays an important role in low-dose quinine-potentiated insulin secretion and provide new insights into KCNH6-targeted drug development.

摘要

胰岛素分泌主要受两种电生理事件调节,一种是由三磷酸腺苷(ATP)敏感性钾离子(KATP)通道关闭引发的去极化,另一种是由钾离子外流介导的复极化。奎宁是一种常用于治疗疟疾的天然成分,据报道它可通过抑制KATP通道直接刺激胰岛素释放,并在治疗过程中导致患者低血糖。在本研究中,我们验证了奎宁对分离的小鼠胰岛的促胰岛素分泌作用。我们还发现,低剂量奎宁(<20 μM)在低葡萄糖条件下不会直接引发钙离子尖峰或胰岛素分泌,但能增强高葡萄糖诱导的钙离子内流和胰岛素分泌,这无法用KATP抑制来解释。KCNH6(hERG2)是一种电压依赖性钾离子(Kv)通道,在胰腺β细胞的复极化中起关键作用。膜片钳实验表明,奎宁在低微摩尔浓度下可抑制hERG通道。然而,奎宁是否能靶向KCNH6以增强葡萄糖诱导的胰岛素分泌仍不清楚。在此,我们表明,在野生型对照小鼠中,体内给予低剂量奎宁(25 mg/kg)可改善葡萄糖耐量并增加葡萄糖诱导的胰岛素释放,但在Kcnh6-β细胞特异性敲除(βKO)小鼠中则不然。同样,在体外,用低剂量奎宁(10 μM)处理原代胰岛β细胞可延长野生型对照组的动作电位持续时间并增强葡萄糖诱导的钙离子内流,但在Kcnh6-βKO组中则无此作用。我们的结果表明,KCNH6在低剂量奎宁增强的胰岛素分泌中起重要作用,并为靶向KCNH6的药物开发提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f048/12120441/858763afe0dc/mjae051fig1.jpg

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