...
首页> 外文期刊>BMC research notes >Opposite temperature effect on transport activity of KCC2/KCC4 and N(K)CCs in HEK-293 cells
【24h】

Opposite temperature effect on transport activity of KCC2/KCC4 and N(K)CCs in HEK-293 cells

机译:对HEK-293细胞中KCC2 / KCC4和N(K)CCS的kcc2 / kcc4和n(k)ccs的运输活性的相反温度影响

获取原文

摘要

Background Cation chloride cotransporters play essential roles in many physiological processes such as volume regulation, transepithelial salt transport and setting the intracellular chloride concentration in neurons. They consist mainly of the inward transporters NCC, NKCC1, and NKCC2, and the outward transporters KCC1 to KCC4. To gain insight into regulatory and structure-function relationships, precise determination of their activity is required. Frequently, these analyses are performed in HEK-293 cells. Recently the activity of the inward transporters NKCC1 and NCC was shown to increase with temperature in these cells. However, the temperature effect on KCCs remains largely unknown. Findings Here, we determined the temperature effect on KCC2 and KCC4 transport activity in HEK-293 cells. Both transporters demonstrated significantly higher transport activity (2.5 fold for KCC2 and 3.3 fold for KCC4) after pre-incubation at room temperature compared to 37°C. Conclusions These data identify a reciprocal temperature dependence of cation chloride inward and outward cotransporters in HEK-293 cells. Thus, lower temperature should be used for functional characterization of KCC2 and KCC4 and higher temperatures for N(K)CCs in heterologous mammalian expression systems. Furthermore, if this reciprocal effect also applies to neurons, the action of inhibitory neurotransmitters might be more affected by changes in temperature than previously thought.
机译:背景阳离子氯化物分类器在许多生理过程中起重要作用,例如批量调节,培养盐盐,并在神经元中设定细胞内氯化物浓度。它们主要由内向转运仪NCC,NKCC1和NKCC2组成,以及向外转运仪KCC1至Kcc4。要深入了解监管和结构功能关系,因此需要精确确定其活动。通常,这些分析在HEK-293细胞中进行。最近,向内转运仪NKCC1和NCC的活性显示在这些细胞中的温度增加。然而,对KCC的温度效应仍然很大程度上是未知的。调查结果,我们确定了HEK-293细胞中KCC2和KCC4传输活性的温度效应。与37℃相比,在室温预孵育后,两种运输函数显示出显着更高的运输活性(KCC2和KCC4的3.3倍)。结论这些数据鉴定了HEK-293细胞中阳离子氯化物的往复温度依赖性和向外的COT转折。因此,较低的温度应用于KCC2和KCC4的功能表征,并且在异源哺乳动物表达系统中的N(k)CCS的较高温度。此外,如果这种往复效果也适用于神经元,则抑制性神经递质的作用可能会受到比以前认为的温度变化更大的影响。

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