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本文引用的文献

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Glucose and pharmacological modulators of ATP-sensitive K+ channels control [Ca2+]c by different mechanisms in isolated mouse alpha-cells.葡萄糖和ATP敏感性钾通道的药理学调节剂通过不同机制控制分离的小鼠α细胞中的[Ca2+]c。
Diabetes. 2009 Feb;58(2):412-21. doi: 10.2337/db07-1298. Epub 2008 Nov 13.
2
K(ATP)-channels and glucose-regulated glucagon secretion.钾离子通道与葡萄糖调节的胰高血糖素分泌
Trends Endocrinol Metab. 2008 Oct;19(8):277-84. doi: 10.1016/j.tem.2008.07.003. Epub 2008 Sep 2.
3
ERG voltage-gated K+ channels regulate excitability and discharge dynamics of the medial vestibular nucleus neurones.视网膜电图电压门控钾通道调节内侧前庭核神经元的兴奋性和放电动态。
J Physiol. 2008 Oct 15;586(20):4877-90. doi: 10.1113/jphysiol.2008.155762. Epub 2008 Aug 21.
4
Voltage-gated ion channels in human pancreatic beta-cells: electrophysiological characterization and role in insulin secretion.人类胰腺β细胞中的电压门控离子通道:电生理特性及其在胰岛素分泌中的作用。
Diabetes. 2008 Jun;57(6):1618-28. doi: 10.2337/db07-0991. Epub 2008 Apr 4.
5
Investigation of transport mechanisms and regulation of intracellular Zn2+ in pancreatic alpha-cells.胰腺α细胞内锌离子的转运机制及调控研究。
J Biol Chem. 2008 Apr 11;283(15):10184-97. doi: 10.1074/jbc.M707005200. Epub 2008 Feb 4.
6
Kv2.1 ablation alters glucose-induced islet electrical activity, enhancing insulin secretion.Kv2.1基因敲除改变了葡萄糖诱导的胰岛电活动,增强了胰岛素分泌。
Cell Metab. 2007 Sep;6(3):229-35. doi: 10.1016/j.cmet.2007.07.010.
7
A K ATP channel-dependent pathway within alpha cells regulates glucagon release from both rodent and human islets of Langerhans.α细胞内一条依赖于ATP敏感性钾通道的途径可调节来自啮齿动物和人类胰岛的胰高血糖素释放。
PLoS Biol. 2007 Jun;5(6):e143. doi: 10.1371/journal.pbio.0050143.
8
Circadian changes of ether-a-go-go-related-gene (Erg) potassium channel transcripts in the rat pancreas and beta-cell.大鼠胰腺和β细胞中与去甲肾上腺素相关基因(Erg)钾通道转录本的昼夜变化。
Cell Mol Life Sci. 2007 Mar;64(6):768-80. doi: 10.1007/s00018-007-6478-3.
9
Pharmacological and biophysical isolation of K+ currents encoded by ether-à-go-go-related genes in murine hepatic portal vein smooth muscle cells.对小鼠肝门静脉平滑肌细胞中由外向整流钾通道相关基因编码的钾电流进行药理学和生物物理学分离。
Am J Physiol Cell Physiol. 2007 Jan;292(1):C468-76. doi: 10.1152/ajpcell.00142.2006. Epub 2006 Jul 26.
10
Species diversity and peptide toxins blocking selectivity of ether-a-go-go-related gene subfamily K+ channels in the central nervous system.中枢神经系统中物种多样性与阻断醚-去极化相关基因亚家族K+通道选择性的肽毒素
Mol Pharmacol. 2006 May;69(5):1673-83. doi: 10.1124/mol.105.019729. Epub 2006 Feb 23.

小鼠和人类胰岛α细胞与β细胞中 Erg 钾通道的特性研究。

Characterization of Erg K+ channels in alpha- and beta-cells of mouse and human islets.

作者信息

Hardy Alexandre B, Fox Jocelyn E Manning, Giglou Pejman Raeisi, Wijesekara Nadeeja, Bhattacharjee Alpana, Sultan Sobia, Gyulkhandanyan Armen V, Gaisano Herbert Y, MacDonald Patrick E, Wheeler Michael B

机构信息

Department of Physiology, University of Toronto, Toronto, Ontario M5S 1A8, Canada.

出版信息

J Biol Chem. 2009 Oct 30;284(44):30441-52. doi: 10.1074/jbc.M109.040659. Epub 2009 Aug 18.

DOI:10.1074/jbc.M109.040659
PMID:19690348
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2781599/
Abstract

Voltage-gated eag-related gene (Erg) K(+) channels regulate the electrical activity of many cell types. Data regarding Erg channel expression and function in electrically excitable glucagon and insulin producing cells of the pancreas is limited. In the present study Erg1 mRNA and protein were shown to be highly expressed in human and mouse islets and in alpha-TC6 and Min6 cells alpha- and beta-cell lines, respectively. Whole cell patch clamp recordings demonstrated the functional expression of Erg1 in alpha- and beta-cells, with rBeKm1, an Erg1 antagonist, blocking inward tail currents elicited by a double pulse protocol. Additionally, a small interference RNA approach targeting the kcnh2 gene (Erg1) induced a significant decrease of Erg1 inward tail current in Min6 cells. To investigate further the role of Erg channels in mouse and human islets, ratiometric Fura-2 AM Ca(2+)-imaging experiments were performed on isolated alpha- and beta-cells. Blocking Erg channels with rBeKm1 induced a transient cytoplasmic Ca(2+) increase in both alpha- and beta-cells. This resulted in an increased glucose-dependent insulin secretion, but conversely impaired glucagon secretion under low glucose conditions. Together, these data present Erg1 channels as new mediators of alpha- and beta-cell repolarization. However, antagonism of Erg1 has divergent effects in these cells; to augment glucose-dependent insulin secretion and inhibit low glucose stimulated glucagon secretion.

摘要

电压门控的醚相关基因(Erg)钾通道调节多种细胞类型的电活动。关于Erg通道在胰腺中可电兴奋的胰高血糖素和胰岛素产生细胞中的表达和功能的数据有限。在本研究中,Erg1 mRNA和蛋白分别在人和小鼠胰岛以及α-TC6和Min6细胞(α细胞和β细胞系)中高表达。全细胞膜片钳记录显示Erg1在α细胞和β细胞中功能性表达,Erg1拮抗剂rBeKm1可阻断双脉冲方案引发的内向尾电流。此外,靶向kcnh2基因(Erg1)的小干扰RNA方法可诱导Min6细胞中Erg1内向尾电流显著降低。为了进一步研究Erg通道在小鼠和人类胰岛中的作用,对分离的α细胞和β细胞进行了比率型Fura-2 AM钙成像实验。用rBeKm1阻断Erg通道可诱导α细胞和β细胞中的细胞质钙短暂增加。这导致葡萄糖依赖性胰岛素分泌增加,但相反地,在低葡萄糖条件下胰高血糖素分泌受损。总之,这些数据表明Erg1通道是α细胞和β细胞复极化的新介质。然而,Erg1的拮抗作用在这些细胞中具有不同的影响;增加葡萄糖依赖性胰岛素分泌并抑制低葡萄糖刺激的胰高血糖素分泌。