首页> 外文期刊>British Journal of Pharmacology >Noradrenaline synthesis after sympathetic nerve activation in rat atria and its dependence on calcium but not CAM kinase Ⅱ and protein kinases A or C
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Noradrenaline synthesis after sympathetic nerve activation in rat atria and its dependence on calcium but not CAM kinase Ⅱ and protein kinases A or C

机译:大鼠心房交感神经活化后去甲肾上腺素的合成及其对钙的依赖性,但不依赖CAM激酶Ⅱ和蛋白激酶A或C

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1 The biosynthesis of noradrenaline following sympathetic nerve activation was investigated in rat atria. In particular the time course of noradrenaline synthesis changes, the relationship of changes in synthesis to transmitter release and the possible roles of second messengers and protein kinases were examined. 2 Rat atria incubated with the precursor [~3H]-tyrosine synthesized [~3H]-noradrenaline. Synthesis was enhanced following pulsatile electrical field stimulation (3 Hz for 5 min) with the bulk of the increase occurring in the first 45 min after the commencement of electrical stimulation. In separate experiments rat atria were pre-incubated with [~3H]-noradrenaline and the radioactive outflow in response to electrical field stimulation (3 Hz for 5 min) was taken as an index of noradrenaline release. 3 Stimulation-induced (S-I) noradrenaline synthesis was significantly correlated to S-I noradrenaline release for a variety of procedures which modulate noradrenaline release by mechanisms altering Ca~(2+) entry into the neurone (r~2 = 0.99): those which decreased release: tetrodotoxin (0.3 μM), Ca~(2+)-free medium, lowering the frequency of nerve activation to 1 Hz, and those which increased release, tetraethylammonium (0.3 mM), phentolamine (1 μM) and the combination of phentolamine (1 μM) and adenosine (10 μM). On the strength of this relationship we suggest that Ca~(2+) entry is a determining factor in S-I synthesis changes rather than the amount of noradrenaline released. Indeed the reduction in noradrenaline release with the calmodulin-dependent protein (CAM) kinase Ⅱ inhibitor KN-62 (10 μM) which acts subsequent to Ca~(2+) entry, did not affect S-I synthesis. 4 The cell permeable cyclic AMP analogue, 8-bromoadenosine 3′, 5′-monophosphate (BrcAMP, 90 and 270 μM), dose-dependently increased basal [~3H]-noradrenaline synthesis in unstimulated rat atria. This effect was antagonized by the selective protein kinase A (PKA) antagonist, Rp-8-chloroadenosine 3′, 5′-cyclic monophosphorothioate (RClcAMPS, 300 μM), suggesting that PKA activation enhances basal noradrenaline biosynthesis in sympathetic nerve terminals. 5 The protein kinase inhibitors, KN-62 (CAM kinase Ⅱ, 10 μM), RClcAMPS (PKA, 300 μM), polymyxin B (protein kinase C (PKC), 21 μM) and staurosporine (PKC, PKA and CAM kinase Ⅱ, 0.1 μM) did not affect S-I synthesis, although KN-62, polymyxin B and staurosporine decreased S-I release. We conclude that S-I synthesis is triggered by Ca~(2+) entering the neurone but that the signalling pathway does not involve classical protein kinases and appears distinct from the steps involved in transmitter release.
机译:1在大鼠心房中研究了交感神经激活后去甲肾上腺素的生物合成。特别地,研究了去甲肾上腺素合成变化的时间过程,合成变化与递质释放的关系以及第二信使和蛋白激酶的可能作用。 2大鼠心房与前体[〜3H]-酪氨酸合成的[〜3H]-去甲肾上腺素一起孵育。搏动性电场刺激(3 Hz,持续5分钟)后增强了合成,大部分增加发生在电刺激开始后的前45分钟内。在单独的实验中,将大鼠心房与[〜3H]-去甲肾上腺素预孵育,并将响应电场刺激(3 Hz,持续5分钟)的放射性流出量作为去甲肾上腺素释放的指标。 3刺激诱导(SI)去甲肾上腺素的合成与SI去甲肾上腺素的释放显着相关,这是通过改变Ca〜(2+)进入神经元的机制来调节去甲肾上腺素释放的各种过程(r〜2 = 0.99):那些降低释放的机制:河豚毒素(0.3μM),无Ca〜(2+)培养基,将神经激活频率降低至1 Hz,以及增加释放的神经兴奋剂,四乙铵(0.3 mM),酚妥拉明(1μM)和酚妥拉明( 1μM)和腺苷(10μM)。根据这种关系的强度,我们建议Ca〜(2+)进入是S-1合成变化的决定因素,而不是去甲肾上腺素释放的量。确实,钙调蛋白依赖性蛋白(CAM)激酶Ⅱ抑制剂KN-62(10μM)降低了去甲肾上腺素的释放,该作用在Ca〜(2+)进入后起作用,但不影响S-1合成。 4细胞可渗透的环状AMP类似物8-溴腺苷3',5'-单磷酸酯(BrcAMP,90和270μM),在不受刺激的大鼠心房中剂量依赖性地增加了基础[〜3H]-去甲肾上腺素的合成。选择性蛋白激酶A(PKA)拮抗剂Rp-8-氯腺苷3',5'-环一硫代磷酸酯(RClcAMPS,300μM)拮抗了这一作用,表明PKA活化增强了交感神经末梢的基础去甲肾上腺素的生物合成。 5蛋白激酶抑制剂KN-62(CAM激酶Ⅱ,10μM),RClcAMPS(PKA,300μM),多粘菌素B(蛋白激酶C(PKC),21μM)和星形孢菌素(PKC,PKA和CAM激酶Ⅱ,尽管KN-62,多粘菌素B和星形孢菌素降低了SI的释放,但0.1μM)并没有影响SI的合成。我们得出的结论是,S-1合成是由进入神经元的Ca〜(2+)触发的,但该信号传导途径并不涉及经典的蛋白激酶,并且与递质释放涉及的步骤不同。

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