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Chronic hypoxia reduces adenosine A2A receptor-mediated inhibition of calcium current in rat PC12 cells via downregulation of protein kinase A

机译:慢性缺氧通过下调蛋白激酶A降低大鼠PC12细胞中腺苷A2A受体介导的钙电流抑制

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摘要

class="enumerated" style="list-style-type:decimal">Adenosine has been shown to decrease Ca2+ current (ICa) and attenuate the hypoxia-induced enhancement of intracellular free Ca2+ ([Ca2+]i) in oxygen-sensitive rat phaeochromocytoma (PC12) cells. These effects are mediated via the adenosine A2A receptor and protein kinase A (PKA). The current study was undertaken to determine the effects of adenosine on Ca2+ current and hypoxia-induced change in [Ca2+]i during chronic hypoxia.Whole cell patch-clamp studies revealed that the effect of adenosine on ICa was significantly reduced when PC12 cells were exposed to hypoxia (10 % O2) for 24 and 48 h.Ca2+ imaging studies using fura-2 revealed that the anoxia-induced increase in [Ca2+]i was significantly enhanced when PC12 cells were exposed to 10 % O2 for up to 48 h. In contrast, the inhibitory effects of adenosine on anoxia-induced elevation of [Ca2+]i was significantly blunted in PC12 cells exposed to hypoxia for 48 h.Northern blot analysis revealed that mRNA for the A2A receptor, which is the only adenosine receptor subtype expressed in PC12 cells, was significantly upregulated by hypoxia. Radioligand binding analysis with [3H], a selective A2A receptor ligand, showed that the number of adenosine A2A receptor binding sites was similarly increased during exposure to 10 % O2 for 48 h.PKA enzyme activity was significantly inhibited when PC12 cells were exposed to 10 % O2 for 24 and 48 h. However, we found that hypoxia failed to induce change in adenosine- and forskolin-stimulated adenylate cyclase enzyme activity. Chronic hypoxia also did not alter the immunoreactivity level of the G protein Gsα, an effector of the A2 signalling pathway.Whole cell patch-clamp analysis showed that the effect of 8-bromo-cAMP, an activator of PKA, on ICa was significantly attenuated during 48 h exposure to 10 % O2.We conclude therefore that the reduced effect of adenosine on ICa and [Ca2+]i in PC12 cells exposed to chronic hypoxia is due to hypoxia-induced downregulation of PKA. This mechanism may serve to reduce the negative feedback on ICa and [Ca2+]i by adenosine and therefore maintain enhanced membrane excitability of PC12 cells during long-term hypoxia.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 腺苷已显示出降低Ca 2 + 电流(ICa)并减弱缺氧诱导的细胞内游离Ca 2 + ([Ca 2 + 2 + 电流和缺氧诱导的[Ca 2 + ] i变化的影响。 整个细胞膜片钳研究表明,当PC12细胞暴露于缺氧(10%O2)24和48小时后,腺苷对ICa的作用明显降低。 Ca 2使用fura-2的+ 成像研究表明,当PC12细胞暴露于10%O2长达48小时时,缺氧诱导的[Ca 2 + ] i的增加显着增强。相反,在缺氧48 h的PC12细胞中,腺苷对缺氧诱导的[Ca 2 + ] i升高的抑制作用明显减弱。 Northern印迹分析揭示了缺氧显着上调了PC2细胞中唯一的腺苷受体亚型A2A受体的mRNA。用[ 3 H](一种选择性的A2A受体配体)进行的放射性配体结合分析表明,在暴露于10%O2 48小时后,腺苷A2A受体结合位点的数量也有类似的增加。 <当PC12细胞暴露于10%O2 24和48 h时,li> PKA酶活性被显着抑制。但是,我们发现缺氧不能诱导腺苷和毛喉素刺激的腺苷酸环化酶活性的变化。慢性缺氧也不会改变G蛋白Gsα(A2信号通路的效应物)的免疫反应水平。 全细胞膜片钳分析表明,8-溴-cAMP是一种激活蛋白。在暴露于10%O 2 的48小时内,I Ca 上的PKA明显减弱。 因此,我们得出结论,腺苷对I 2 的作用降低暴露于慢性缺氧的PC12细胞中的 Ca 和[Ca 2 + ] i 是由于缺氧引起的PKA下调。这种机制可能有助于减少腺苷对I Ca 和[Ca 2 + ] i 的负反馈,从而维持PC12增强的膜兴奋性。长期缺氧期间的细胞。

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