首页> 美国卫生研究院文献>The Journal of Physiology >Roles of arachidonic acid lipoxygenases and phosphatases in calcium-dependent modulation of M-current in bullfrog sympathetic neurons.
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Roles of arachidonic acid lipoxygenases and phosphatases in calcium-dependent modulation of M-current in bullfrog sympathetic neurons.

机译:花生四烯酸脂氧合酶和磷酸酶在牛蛙交感神经元中钙依赖的M电流调节中的作用。

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摘要

1. M-current (IM) is regulated by intracellular free Ca2+ ([Ca2+]i). Suppression and overrecovery of IM induced by muscarine and luteinizing-hormone releasing hormone (LHRH) are also regulated by [Ca2+]i. The role of the arachidonic acid (AA) pathway in the Ca(2+)-dependent modulation of IM was investigated using whole-cell voltage clamp and intracellular perfusion in dissociated bullfrog sympathetic B neurons. 2. Quinacrine (10-20 microM) and 4-bromophenacyl bromide (4-BPB; 4-10 microM), the inhibitors of phospholipase A2, blocked the enhancement of IM evoked by raising [Ca2+]i. 3. AA (6-120 microM) increased IM by about 50% of the control current in a Ca(2+)-dependent manner. 4. Enhancements of IM by Ca2+ and AA were blocked by the lipoxygenase (LO) inhibitors nordihydroguaiaretic acid (NDGA; 1-5 microM) and 5,8,11-eicosatrynoic acid (ETI; 10 microM). The cyclo-oxygenase inhibitor indomethacin (10 microM) had no effect. 5. Enhancement of IM by Ca2+ was abolished by the selective 12-LO inhibitors baicalein (1-2 microM) and 15(S)-hydroxy-5-cis-8-cis-11-cis-13-trans-eicosatetraenoic acid (15-HETE; 6.5 microM). A 12-LO product, 2(S)-hydroxy-5-cis-8-cis-10-trans-14-cis- eicosatetraenoic acid (12-HETE; 13-20 microM), increased IM without Ca2+ requirement. 6. Enhancement of IM by Ca2+ was not affected by the selective 5-LO inhibitors AA-861 (10 microM), 5,6-dehydroarachidonic acid (5,6-DAA, 10 microM) and L-651,896 (10 microM). The 5-LO metabolites leukotriene C4 (1.5-8 microM) and leukotriene B4 (1.5-5 microM) showed no obvious effect on IM. 7. NDGA alone inhibited IM with an IC50 of 0.73 microM at 120 nM Cai(2+). 8. NDGA did not affect suppression of IM by muscarine or LHRH; however, overrecovery of IM upon removing these agonists was totally eliminated by 1 microM NDGA. 9. Inhibitors of phosphatases, calyculin A (0.1 microM) and okadaic acid (1 microM), completely abolished overrecovery of IM. Calyculin A also blocked the Ca(2+)-induced IM enhancement. 10. It is suggested that Ca2+ enhances IM by stimulating the AA metabolic pathway. Dephosphorylation probably upregulates IM. Overrecovery of IM is probably a result of stimulation of the LO pathway and phosphatases by increased [Ca2+]i.
机译:1. M电流(IM)受细胞内游离Ca2 +([Ca2 +] i)调节。毒蕈碱和促黄体激素释放激素(LHRH)诱导的IM的抑制和过度恢复也受[Ca2 +] i的调节。花生四烯酸(AA)通路在IM的Ca(2+)依赖调制的IM的作用进行了调查,在分离的牛蛙交感神经B神经元中使用全细胞电压钳和细胞内灌注。 2.磷脂酶A2的抑制剂奎纳克林(10-20 microM)和4-溴苯甲酰溴(4-BPB; 4-10 microM)阻止了通过升高[Ca2 +] i引起的IM的增强。 3. AA(6-120 microM)以Ca(2+)依赖的方式使IM增加了约50%的控制电流。 4.脂氧合酶(LO)抑制剂去甲二氢愈创木酸(NDGA; 1-5 microM)和5,8,11-二十碳烯酸(ETI; 10 microM)阻止了Ca2 +和AA对IM的增强。环加氧酶抑制剂吲哚美辛(10 microM)无效。 5.选择性12-LO抑制剂黄ical素(1-2 microM)和15(S)-羟基-5-cis-8-cis-11-cis-13-反式二十碳四烯酸( 15-HETE; 6.5 microM)。 12-LO产物2(S)-羟基-5-顺8-顺10-10-反14-顺二十碳四烯酸(12-HETE; 13-20 microM)增加了IM,而无需Ca2 +。 6.选择性5-LO抑制剂AA-861(10 microM),5,6-脱氢花生四烯酸(5,6-DAA,10 microM)和L-651,896(10 microM)不会影响Ca2 +对IM的增强作用。 5-LO代谢产物白三烯C4(1.5-8 microM)和白三烯B4(1.5-5 microM)对IM没有明显作用。 7.单独的NDGA在120 nM Cai(2+)处抑制IM的IC50为0.73 microM。 8. NDGA不会影响毒蕈碱或LHRH对IM的抑制作用;但是,用1 microM NDGA完全消除了去除这些激动剂后IM的过度恢复。 9.磷酸酶,calyculin A(0.1 microM)和冈田酸(1 microM)的抑制剂完全消除了IM的过度恢复。 Calyculin A还阻止了Ca(2+)诱导的IM增强。 10.建议Ca 2+通过刺激AA代谢途径增强IM。去磷酸化可能会上调IM。 IM的过度恢复可能是由于增加[Ca2 +] i刺激了LO途径和磷酸酶的结果。

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