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HL-1 cells express an inwardly rectifying K+ current activated via muscarinic receptors comparable to that in mouse atrial myocytes

机译:HL-1细胞表达一种通过毒蕈碱受体激活的内向整流性K +电流与小鼠心房肌细胞中的电流相当

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摘要

An inwardly rectifying K+ current is present in atrial cardiac myocytes that is activated by acetylcholine (IKACh). Physiologically, activation of the current in the SA node is important in slowing the heart rate with increased parasympathetic tone. It is a paradigm for the direct regulation of signaling effectors by the Gβγ G-protein subunit. Many questions have been addressed in heterologous expression systems with less focus on the behaviour in native myocytes partly because of the technical difficulties in undertaking comparable studies in native cells. In this study, we characterise a potassium current in the atrial-derived cell line HL-1. Using an electrophysiological approach, we compare the characteristics of the potassium current with those in native atrial cells and in a HEK cell line expressing the cloned Kir3.1/3.4 channel. The potassium current recorded in HL-1 is inwardly rectifying and activated by the muscarinic agonist carbachol. Carbachol-activated currents were inhibited by pertussis toxin and tertiapin-Q. The basal current was time-dependently increased when GTP was substituted in the patch-clamp pipette by the non-hydrolysable analogue GTPγS. We compared the kinetics of current modulation in HL-1 with those of freshly isolated atrial mouse cardiomyocytes. The current activation and deactivation kinetics in HL-1 cells are comparable to those measured in atrial cardiomyocytes. Using immunofluorescence, we found GIRK4 at the membrane in HL-1 cells. Real-time RT-PCR confirms the presence of mRNA for the main G-protein subunits, as well as for M2 muscarinic and A1 adenosine receptors. The data suggest HL-1 cells are a good model to study IKAch.
机译:心房心肌细胞中存在向内整流的K + 电流,该电流被乙酰胆碱(IKACh)激活。从生理上来说,激活SA结中的电流对于降低心率并增加副交感神经很重要。它是通过GβγG蛋白亚基直接调节信号转导效应子的范例。在异源表达系统中已经解决了许多问题,而较少关注天然肌细胞的行为,部分原因是在天然细胞中进行可比研究的技术困难。在这项研究中,我们表征了心房衍生细胞系HL-1中的钾电流。使用电生理方法,我们将钾电流的特征与天然心房细胞和表达克隆的Kir3.1 / 3.4通道的HEK细胞系中的钾电流特征进行了比较。 HL-1中记录的钾电流向内整流并被毒蕈碱激动剂卡巴胆碱激活。百日咳毒素和tertiapin-Q抑制了卡巴胆碱激活的电流。当膜片钳移液器中的GTP被不可水解的类似物GTPγS取代时,基础电流随时间增加。我们比较了HL-1中电流调节的动力学与新鲜分离的心房鼠心肌细胞的动力学。 HL-1细胞中当前的激活和失活动力学与心房心肌细胞中测得的动力学相当。使用免疫荧光,我们在HL-1细胞的膜上发现了GIRK4。实时RT-PCR证实主要G蛋白亚基以及M2毒蕈碱和A1腺苷受体均存在mRNA。数据表明HL-1细胞是研究IKAch的良好模型。

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