首页> 外文期刊>Molecular pharmacology. >Recovery of current through mutated TASK3 potassium channels underlying birk barel syndrome
【24h】

Recovery of current through mutated TASK3 potassium channels underlying birk barel syndrome

机译:通过Birk Ba​​rel综合征潜在的TASK3钾离子通道突变恢复电流

获取原文
获取原文并翻译 | 示例
       

摘要

TASK3 TWIK-related acid-sensitive K1 channel 3 potassium channels are members of the two-pore-domain potassium channel family. They are responsible for background leak potassium currents found in many cell types. TASK3 channels are genetically imprinted, and a mutation in TASK3 (G236R) is responsible for Birk Barel mental retardation dysmorphism syndrome, a maternally transmitted developmental disorder. This syndrome may arise from a neuronal migration defect during development caused by dysfunctional TASK3 channels. Through the use of whole-cell electrophysiologic recordings, we have found that, although G236R mutated TASK3 channels give rise to a functional current, this current is significantly smaller in an outward direction when compared with wild-type (WT) TASK3 channels. In contrast to WT TASK3 channels, the current is inwardly rectifying. Furthermore, the current through mutated channels is differentially sensitive to a number of regulators, such as extracellular acidification, extracellular zinc, and activation of Gaq-coupled muscarinic (M3) receptors, compared with WT TASK3 channels. The reduced outward current through mutated TASK3-G236R channels can be overcome, at least in part, by both a gain-of-function additional mutation of TASK3 channels (A237T) or by application of the nonsteroidal anti-inflammatory drug flufenamic acid (FFA; 2-{[3- (trifluoromethyl)phenyl]amino}benzoic acid). FFA produces a significantly greater enhancement of current through mutated channels than through WT TASK3 channels. We propose that pharmacologic enhancement of mutated TASK3 channel current during development may, therefore, provide a potentially useful therapeutic strategy in the treatment of Birk Barel syndrome.
机译:TASK3 TWIK相关的酸敏感性K1通道3钾通道是两孔结构域钾通道家族的成员。它们负责在许多细胞类型中发现的背景泄漏钾电流。 TASK3通道具有基因印记,而TASK3(G236R)中的突变是导致Birk Ba​​rel智力低下的畸形综合征(一种母体传播的发育障碍)的原因。该综合征可能是由于发育不良的TASK3通道导致的神经元迁移缺陷引起的。通过使用全细胞电生理记录,我们发现,尽管G236R突变的TASK3通道产生了功能电流,但与野生型(WT)TASK3通道相比,该电流在向外方向上显着较小。与WT TASK3通道相反,电流向内整流。此外,与WT TASK3通道相比,通过突变通道的电流对许多调节剂(如细胞外酸化,细胞外锌和Gaq偶联毒蕈碱(M3)受体的激活)具有不同的敏感性。通过突变的TASK3-G236R通道减少的向外电流可以至少部分地通过功能增强的TASK3通道额外突变(A237T)或通过应用非甾体抗炎药氟苯那酸(FFA; 2-{[3-(三氟甲基)苯基]氨基}苯甲酸)。与通过WT TASK3通道相比,FFA通过突变通道产生的电流显着增强。我们建议,在发育过程中突变的TASK3通道电流的药理增强可能因此为Birk Ba​​rel综合征的治疗提供潜在的有用的治疗策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号