首页> 外文期刊>The Journal of biological chemistry >Isoproterenol and cAMP Block ERK Phosphorylation and Enhance [Ca2+]i Increases and Oxygen Consumption by Muscarinic Receptor Stimulation in Rat Parotid and Submandibular Acinar Cells
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Isoproterenol and cAMP Block ERK Phosphorylation and Enhance [Ca2+]i Increases and Oxygen Consumption by Muscarinic Receptor Stimulation in Rat Parotid and Submandibular Acinar Cells

机译:异丙肾上腺素和阵营块ERK磷酸化和增强[Ca2 +]我通过毒蕈碱受体刺激在大鼠腮腺和颌下酰基细胞中增加和氧气消耗

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Salivary glands are innervated by sympathetic and parasympathetic neurons, which release neurotransmitters that promote fluid secretion and exocytosis when they bind to muscarinic and β-adrenergic receptors, respectively. Signaling pathways downstream of these receptors are mainly distinct, but there is cross-talk that affects receptor-dependent events. Here we report that the β-adrenergic ligand isoproterenol blocks increases in extracellular signal-related kinase (ERK) phosphorylation, a protein kinase C-dependent event promoted by the muscarinic receptor ligand carbachol in freshly dispersed rat parotid acinar cells. The inhibitory action of isoproterenol was reproduced by cAMP stimuli (forskolin) and mimetics (dibutyryl-cAMP, 8-(4-chlorophenylthio)-cAMP), including one highly selective for protein kinase A (N6-benzoyl-cAMP). In contrast, Epac (exchange proteins directly activated by cAMP)-selective activators did not mimic the blockade of ERK by isoproterenol, suggesting that inhibition involved protein kinase A. Isoproterenol also blocked ERK downstream of phorbol 12-myristate 13-acetate and the P2X7 and epidermal growth factor receptors. Isoproterenol and forskolin blocked MEK phosphorylation, reduced RAF phosphorylation on a stimulatory site (Ser-338), and increased RAF phosphorylation on an inhibitory site (Ser-259). Inhibitory effects on ERK were also observed in freshly dispersed rat submandibular acinar cells but not in three immortalized/cancer salivary cell lines (Par-C10, HSY, HSG), indicating significant differences between native cells and cell lines. Notably, in native parotid cells isoproterenol enhanced the carbachol-promoted increases in [Ca2+]i and oxygen consumption, events that initiate and accompany, respectively, the stimulation of fluid secretion by muscarinic ligands. Thus, isoproterenol produces opposite effects on prominent events downstream of the muscarinic receptor second messengers diacylglycerol (decrease in ERK phosphorylation) and inositol trisphosphate (increase in [Ca2+]i and fluid secretion).
机译:唾液腺分别通过交感神经和副交感神经神经元视为释放神经递质的神经递质,当它们与毒蕈碱和β-肾上腺素能受体分别促进液体分泌和卵尿量。这些受体下游的信号传导途径主要是截然不同的,但有串扰影响受体依赖事件。在这里,我们认为β-肾上腺素能配体异丙醇嵌段在细胞外信号相关激酶(ERK)磷酸化中增加,由新分散的大鼠腮腺细胞中的毒蕈碱受体配体促进的蛋白酶激酶C依赖性事件促进。通过CAMP刺激(FORSKOLIN)和模拟物(Dibutyryl-CAMP,8-(4-氯苯硫基)-camp)再现异丙醇的抑制作用,包括对蛋白激酶A(N6-苯甲酰蛋白)的高度选择性。相比之下,EPAC(CAMP直接激活的交换蛋白) - 选择性活化剂不模仿异丙肾上腺素的封锁,表明抑制蛋白激酶A.异丙肾上腺素也阻断了浮球12-γ-醋酸酯下游的ERK,并且表皮生长因子受体。异丙肾上腺素和斯科啉蛋白阻断MEK磷酸化,在刺激部位(SER-338)上减少了RAF磷酸化,并增加了抑制位点上的RAF磷酸化(SER-259)。在新分散的大鼠颌下缩醛细胞中也观察到对ERK的抑制作用,但不含三种永生/癌症唾液细胞系(PAR-C10,HSY,HSG),表明天然细胞和细胞系之间的显着差异。值得注意的是,在天然腮腺细胞中,异丙肾上腺素增强了[Ca2 +] I和氧气消耗中的促进的碳酰胺促进的增加,分别引发和伴随的事件,肌肉素配体刺激液体分泌物。因此,异丙肾上腺素对肌肉蛋白受体第二信使二酰基甘油(ERK磷酸化降低)和肌醇三磷酸(增加[Ca2 +] I和流体分泌)的突出事件对突出事件产生相反的影响。

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