Bettahi Ilham, Marker Cheryl L, Roman Maria I, Wickman Kevin
Department of Pharmacology, University of Minnesota, Minneapolis 55455, USA.
J Biol Chem. 2002 Dec 13;277(50):48282-8. doi: 10.1074/jbc.M209599200. Epub 2002 Oct 8.
The muscarinic-gated atrial potassium (I(KACh)) channel contributes to the heart rate decrease triggered by the parasympathetic nervous system. I(KACh) is a heteromultimeric complex formed by Kir3.1 and Kir3.4 subunits, although Kir3.4 homomultimers have also been proposed to contribute to this conductance. While Kir3.4 homomultimers evince many properties of I(KACh), the contribution of Kir3.1 to I(KACh) is less well understood. Here, we explored the significance of Kir3.1 using knock-out mice. Kir3.1 knock-out mice were viable and appeared normal. The loss of Kir3.1 did not affect the level of atrial Kir3.4 protein but was correlated with a loss of carbachol-induced current in atrial myocytes. Low level channel activity resembling recombinant Kir3.4 homomultimers was observed in 40% of the cell-attached patches from Kir3.1 knock-out myocytes. Channel activity typically ran down quickly, however, and was not recovered in the inside-out configuration despite the addition of GTP and ATP to the bath. Both Kir3.1 knock-out and Kir3.4 knock-out mice exhibited mild resting tachycardias and blunted responses to pharmacological manipulation intended to activate I(KACh). We conclude that Kir3.1 confers properties to I(KACh) that enhance channel activity and that Kir3.4 homomultimers do not contribute significantly to the muscarinic-gated potassium current.
毒蕈碱门控性心房钾通道(I(KACh))参与了由副交感神经系统引发的心率降低过程。I(KACh)是一种由Kir3.1和Kir3.4亚基组成的异源多聚体复合物,不过也有人提出Kir3.4同型多聚体也参与了这种离子电导。虽然Kir3.4同型多聚体表现出了I(KACh)的许多特性,但Kir3.1对I(KACh)的贡献却了解得较少。在此,我们利用基因敲除小鼠探究了Kir3.1的重要性。Kir3.1基因敲除小鼠能够存活且外观正常。Kir3.1的缺失并未影响心房Kir3.4蛋白的水平,但与心房肌细胞中卡巴胆碱诱导电流的丧失相关。在Kir3.1基因敲除心肌细胞的40%的细胞贴附式膜片中观察到了类似于重组Kir3.4同型多聚体的低水平通道活性。然而,通道活性通常很快就会衰减,并且尽管向浴槽中添加了GTP和ATP,在内面向外模式下也无法恢复。Kir3.1基因敲除小鼠和Kir3.4基因敲除小鼠均表现出轻度的静息心动过速,并且对旨在激活I(KACh)的药理学操作反应迟钝。我们得出结论,Kir3.1赋予I(KACh)一些特性,这些特性可增强通道活性,并且Kir3.4同型多聚体对毒蕈碱门控性钾电流的贡献不大。