首页> 外文期刊>The Journal of Physiology >Arachidonate-regulated Ca2+-selective (ARC) channel activity is modulated by phosphorylation and involves an A-kinase anchoring protein.
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Arachidonate-regulated Ca2+-selective (ARC) channel activity is modulated by phosphorylation and involves an A-kinase anchoring protein.

机译:花生四烯酸调节的Ca2 +选择性(ARC)通道活性通过磷酸化来调节,并涉及A激酶锚定蛋白。

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摘要

In many non-excitable cells, the predominant mode of agonist-activated Ca(2+) entry switches from the arachidonic acid-regulated Ca(2+) (ARC) channels at low agonist concentrations, to store-operated channels at high concentrations. Underlying this process is the inhibition of the ARC channels by a calcineurin-mediated dephosphorylation, which inhibits the ability of arachidonic acid to activate the channels. Following such a dephosphorylation, we found that restoration of the sensitivity of the ARC channels to arachidonic acid, as well as to low concentrations of carbachol, was specifically dependent on protein kinase A (PKA) activity. Inhibition of protein kinase C, protein kinase G or calmodulin-activated kinase had no effect. This action of PKA was unaffected by prolonged intracellular dialysis, whilst disruption of the binding of PKA to A-kinase anchoring proteins (AKAPs) inhibited currents through ARC channels, and blocked the PKA-dependent effects. AKAP79, a protein which scaffolds both PKA and calcineurin, was shown to be present in the cells. These data illustrate the significance of PKA-dependent phosphorylation and calcineurin-dependent dephosphorylation in the overall regulation of ARC channel activity, and indicate the key role of an AKAP, possibly AKAP79, in the spatial organization these processes.
机译:在许多非兴奋性细胞中,激动剂激活的Ca(2+)进入的主要模式从低激动剂浓度的花生四烯酸调节的Ca(2+)(ARC)通道切换到高浓度的存储操作通道。该过程的基础是钙调神经磷酸酶介导的去磷酸化对ARC通道的抑制作用,从而抑制了花生四烯酸激活通道的能力。经过这样的去磷酸化,我们发现ARC通道对花生四烯酸以及低浓度的卡巴胆碱的敏感性的恢复特别取决于蛋白激酶A(PKA)的活性。抑制蛋白激酶C,蛋白激酶G或钙调蛋白激活的激酶无效。 PKA的这种作用不受长时间的细胞内透析的影响,而PKA与A激酶锚定蛋白(AKAPs)结合的破坏会抑制通过ARC通道的电流,并阻断PKA依赖性作用。 AKAP79,一种同时支持PKA和钙调神经磷酸酶的蛋白质,已显示在细胞中。这些数据说明了PKA依赖的磷酸化和钙调磷酸酶依赖的去磷酸化在ARC通道活性的总体调控中的重要性,并表明了AKAP(可能是AKAP79)在这些过程的空间组织中的关键作用。

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