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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Protein kinase-dependent phosphorylation and cannabinoid receptor modulation of potassium A current (IA) in cultured rat hippocampal neurons.
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Protein kinase-dependent phosphorylation and cannabinoid receptor modulation of potassium A current (IA) in cultured rat hippocampal neurons.

机译:蛋白激酶依赖性磷酸化和大麻素受体调节的培养大鼠海马神经元中的钾电流(IA)。

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The potent cannabinoid receptor agonist WIN 55,212-2 produces positive shifts in steady-state inactivation of the potassium A current (IA) in rat hippocampal neurons via an adenosine 3',5'-cyclic monophosphate (cAMP)-, protein kinase A (PKA)-dependent process. This effect is probably mediated by phosphorylation or dephosphorylation of the IA channel protein. The role of protein phosphorylation in this cascade was tested by testing cannabinoid actions in cultured hippocampal neurons (pyramidal cells) that were exposed also to either the catalytic subunit of PKA (PKAc), a PKA-specific phosphorylation inhibitor (IP-20, Walsh peptide), or a potent protein phosphatase inhibitor (okadaic acid). Cannabinoids such as WIN 55,212-2 produce a positive (rightwards) shift in the steady-state inactivation of IA, thus providing increased current at a given membrane voltage. Cells dialyzed with PKAc showed a negative shift in IA inactivation, opposite to that produced by cannabinoids, and similar to that produced by increased levels of cAMP. In addition, PKAc completely blocked the positive shift produced by WIN 55,212-2. In contrast, dialysis of cells with IP-20 produced a positive shift in steady state inactivation of IA, similar to that produced by WIN, but the effects were not additive with cannabinoid receptor activation. The phosphatase inhibitor, okadaic acid produced a small negative shift in IA steady-state inactivation when administered alone, and blocked the positive shift produced by WIN 55,212-2. Okadaic acid also enhanced the negative shift in IA inactivation when co-administered with forskolin. The effects of okadaic acid and WIN 55,212-2 were not additive, suggesting a common pathway. These results demonstrate that IA is altered by direct manipulations of the phosphorylation status of the channel protein, and that cannabinoid effects on IA are probably mediated by dephosphorylation of the IA channel.
机译:强大的大麻素受体激动剂WIN 55,212-2通过腺苷3',5'-环一磷酸(cAMP)-,蛋白激酶A(PKA)在大鼠海马神经元的稳态A电流失活中产生正向转变)依赖的过程。此作用可能是由IA通道蛋白的磷酸化或去磷酸化介导的。通过测试培养的海马神经元(锥体细胞)中的大麻素作用来测试蛋白质磷酸化在该级联中的作用,该海马神经元也暴露于PKA特异性磷酸化抑制剂PKA(PKAc)的催化亚基(IP-20,Walsh肽) )或有效的蛋白磷酸酶抑制剂(冈田酸)。大麻素(例如WIN 55,212-2)在IA的稳态失活中产生正向(向右)偏移,从而在给定的膜电压下提供增加的电流。用PKAc透析的细胞在IA失活中显示出负向偏移,与大麻素产生的负向相反,并且与cAMP水平升高所产生的相似。此外,PKAc完全阻止了WIN 55,212-2产生的积极转变。相反,用IP-20透析细胞会在IA的稳态失活中产生正向移动,与WIN产生的相似,但这种作用不会与大麻素受体激活相加。单独使用时,磷酸酶抑制剂冈田酸在IA稳态失活中产生小的负移,并阻止WIN 55,212-2产生的正移。当与毛喉素共同施用时,冈田酸还增强了IA失活的负向变化。冈田酸和WIN 55,212-2的作用不是累加的,表明存在共同的途径。这些结果表明,通过直接操纵通道蛋白的磷酸化状态可以改变IA,并且大麻素对IA的作用可能是由IA通道的去磷酸化介导的。

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