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Differential effects of inhibitory G protein isoforms on G protein-gated inwardly rectifying K+ currents in adult murine atria

机译:抑制性G蛋白同工型对成年鼠心房G蛋白门控内向K +电流的差异作用

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摘要

G protein-gated inwardly rectifying K+ (GIRK) channels are the major inwardly rectifying K+ currents in cardiac atrial myocytes and an important determinant of atrial electrophysiology. Inhibitory G protein α-subunits can both mediate activation via acetylcholine but can also suppress basal currents in the absence of agonist. We studied this phenomenon using whole cell patch clamping in murine atria from mice with global genetic deletion of Gαi2, combined deletion of Gαi1/Gαi3, and littermate controls. We found that mice with deletion of Gαi2 had increased basal and agonist-activated currents, particularly in the right atria while in contrast those with Gαi1/Gαi3 deletion had reduced currents. Mice with global genetic deletion of Gαi2 had decreased action potential duration. Tissue preparations of the left atria studied with a multielectrode array from Gαi2 knockout mice showed a shorter effective refractory period, with no change in conduction velocity, than littermate controls. Transcriptional studies revealed increased expression of GIRK channel subunit genes in Gαi2 knockout mice. Thus different G protein isoforms have differential effects on GIRK channel behavior and paradoxically Gαi2 act to increase basal and agonist-activated GIRK currents. Deletion of Gαi2 is potentially proarrhythmic in the atria.
机译:G蛋白门控的内向整流K + (GIRK)通道是心脏心房肌细胞中主要的内向整流K + 电流,是心房电生理的重要决定因素。抑制性G蛋白α亚基既可以通过乙酰胆碱介导活化,又可以在不存在激动剂的情况下抑制基础电流。我们使用全细胞膜片钳研究了小鼠的心房中的这种现象,该小鼠的心室具有Gαi2的全局遗传缺失,Gαi1/Gαi3的组合缺失和同窝对照。我们发现,缺失Gαi2的小鼠的基础和激动剂激活的电流增加,尤其是在右心房,而相比之下,缺失Gαi1/Gαi3的小鼠的电流降低。具有全局遗传缺失Gαi2的小鼠的动作电位持续时间减少。用多电极阵列对来自Gαi2基因敲除小鼠的左心房组织制剂的研究显示,其有效不应期比同窝仔对照短,而传导速度没有变化。转录研究显示,Gαi2基因敲除小鼠中GIRK通道亚基基因的表达增加。因此,不同的G蛋白同工型对GIRK通道行为具有不同的影响,而自相矛盾的Gαi2起到增加基础和激动剂激活的GIRK电流的作用。在心房中删除Gαi2可能会导致心律失常。

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