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Family-based genome-wide association study of frontal θ oscillations identifies potassium channel gene KCNJ6.基于家系的全基因组关联研究发现额叶θ振荡与钾通道基因 KCNJ6 有关。
Genes Brain Behav. 2012 Aug;11(6):712-9. doi: 10.1111/j.1601-183X.2012.00803.x. Epub 2012 May 31.
2
Rodent motor and neuropsychological behaviour measured in home cages using the integrated modular platform SmartCage™.使用集成式模块化平台 SmartCage™ 在家庭饲养笼中测量啮齿动物的运动和神经行为。
Clin Exp Pharmacol Physiol. 2012 Jul;39(7):614-22. doi: 10.1111/j.1440-1681.2012.05719.x.
3
G-protein-gated inwardly rectifying K+ channel 4 (GIRK4) immunoreactivity in chemically defined neurons of the hypothalamic arcuate nucleus that control body weight.G 蛋白门控内向整流钾通道 4(GIRK4)在控制体重的下丘脑弓状核的化学定义神经元中的免疫反应性。
J Chem Neuroanat. 2012 May;44(1):14-23. doi: 10.1016/j.jchemneu.2012.03.003. Epub 2012 Mar 23.
4
Association study of the KCNJ3 gene as a susceptibility candidate for schizophrenia in the Chinese population.KCNJ3 基因与精神分裂症易感性关联的研究:中国人群的病例对照研究。
Hum Genet. 2012 Mar;131(3):443-51. doi: 10.1007/s00439-011-1089-3. Epub 2011 Sep 17.
5
Identification of selective agonists and antagonists to g protein-activated inwardly rectifying potassium channels: candidate medicines for drug dependence and pain.鉴定 G 蛋白激活内向整流钾通道的选择性激动剂和拮抗剂:用于药物依赖和疼痛的候选药物。
Curr Neuropharmacol. 2011 Mar;9(1):113-7. doi: 10.2174/157015911795017227.
6
Mutations in KCNJ5 gene cause hyperaldosteronism.KCNJ5基因的突变会导致醛固酮增多症。
Circ Res. 2011 Jun 10;108(12):1417-8. doi: 10.1161/RES.0b013e318224a359.
7
Common polymorphisms in KCNJ5 [corrected] are associated with early-onset lone atrial fibrillation in Caucasians.KCNJ5基因的常见多态性与白种人中早发性孤立性心房颤动相关。 [校正后]
Cardiology. 2011;118(2):116-20. doi: 10.1159/000323840. Epub 2011 May 9.
8
Naringin directly activates inwardly rectifying potassium channels at an overlapping binding site to tertiapin-Q.柚皮苷在与 tertiapin-Q 重叠的结合位点直接激活内向整流钾通道。
Br J Pharmacol. 2011 Jul;163(5):1017-33. doi: 10.1111/j.1476-5381.2011.01315.x.
9
Effects of a highly selective acetylcholine-activated K+ channel blocker on experimental atrial fibrillation.高度选择性乙酰胆碱激活的钾通道阻滞剂对实验性心房颤动的影响。
Circ Arrhythm Electrophysiol. 2011 Feb;4(1):94-102. doi: 10.1161/CIRCEP.110.951608. Epub 2010 Dec 14.
10
Small-molecule modulators of inward rectifier K+ channels: recent advances and future possibilities.内向整流钾通道小分子调节剂:最新进展与未来可能。
Future Med Chem. 2010 May;2(5):757-74. doi: 10.4155/fmc.10.179.

ML297(VU0456810)是一种强效且选择性的 GIRK 钾通道激活剂,在小鼠中显示出抗癫痫特性。

ML297 (VU0456810), the first potent and selective activator of the GIRK potassium channel, displays antiepileptic properties in mice.

机构信息

Vanderbilt Institute of Chemical Biology, ‡Department of Pharmacology, §Department of Chemistry, ∥Vanderbilt Specialized Chemistry Center, ⊥Division of Anesthesiology, and #Vanderbilt Center for Neuroscience Drug Discovery, Vanderbilt University , Nashville, Tennessee 37232, United States.

出版信息

ACS Chem Neurosci. 2013 Sep 18;4(9):1278-86. doi: 10.1021/cn400062a. Epub 2013 Jun 13.

DOI:10.1021/cn400062a
PMID:23730969
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3778424/
Abstract

The G-protein activated, inward-rectifying potassium (K(+)) channels, "GIRKs", are a family of ion channels (Kir3.1-Kir3.4) that has been the focus of intense research interest for nearly two decades. GIRKs are comprised of various homo- and heterotetrameric combinations of four different subunits. These subunits are expressed in different combinations in a variety of regions throughout the central nervous system and in the periphery. The body of GIRK research implicates GIRK in processes as diverse as controlling heart rhythm, to effects on reward/addiction, to modulation of response to analgesics. Despite years of GIRK research, very few tools exist to selectively modulate GIRK channels' activity and until now no tools existed that potently and selectively activated GIRKs. Here we report the development and characterization of the first truly potent, effective, and selective GIRK activator, ML297 (VU0456810). We further demonstrate that ML297 is active in two in vivo models of epilepsy, a disease where up to 40% of patients remain with symptoms refractory to present treatments. The development of ML297 represents a truly significant advancement in our ability to selectively probe GIRK's role in physiology as well as providing the first tool for beginning to understand GIRK's potential as a target for a diversity of therapeutic indications.

摘要

G 蛋白激活内向整流钾 (K(+)) 通道,“GIRKs”,是一类离子通道 (Kir3.1-Kir3.4),近二十年来一直是研究的热点。GIRKs 由四个不同亚基的各种同型和异型四聚体组成。这些亚基以不同的组合在中枢神经系统和外周的不同区域表达。GIRK 的研究表明,GIRK 参与了从控制心率到影响奖励/成瘾,再到调节对镇痛药反应等各种过程。尽管 GIRK 的研究已有多年,但几乎没有选择性调节 GIRK 通道活性的工具,而且到目前为止还没有能够有效且选择性地激活 GIRKs 的工具。在这里,我们报告了第一个真正有效、有效的、选择性 GIRK 激活剂 ML297 (VU0456810) 的开发和特性。我们进一步证明 ML297 在两种癫痫动物模型中均具有活性,在这种疾病中,多达 40%的患者的症状对现有治疗方法仍有抗药性。ML297 的开发代表了我们选择性研究 GIRK 在生理学中的作用的能力的真正重大进展,同时也为我们开始理解 GIRK 作为多种治疗适应症的靶点的潜力提供了第一个工具。