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锂离子对由神经降压素、血管紧张素II和缓激肽刺激产生的环鸟苷酸的形成具有强大且选择性的抑制作用。

Lithium ions have a potent and selective inhibitory effect on cyclic GMP formation stimulated by neurotensin, angiotensin II and bradykinin.

作者信息

Kanba S, Pfenning M, Kanba K S, Richelson E

出版信息

Eur J Pharmacol. 1986 Jul 15;126(1-2):111-6. doi: 10.1016/0014-2999(86)90745-4.

Abstract

The effect of lithium ion (Li+) on receptor-mediated synthesis of cyclic GMP, a putative second messenger, was examined using intact murine neuroblastoma cells (clone N1E-115). Lithium chloride potently inhibited cyclic GMP formation stimulated by the neuropeptides, neurotensin, angiotensin II and bradykinin in an identical concentration-dependent (IC50 s of around 12 mM), saturable and reversible manner. In the presence of veratridine, an alkaloid which by stimulating sodium channels can increase Li+ entry into the cells, Li+ inhibited neurotensin-stimulated cyclic GMP formation more potently (IC50 = 7 mM). No effect of Li+ was observed on phosphodiesterase (EC 3.1.4.17) activity. These results suggest that Li+ may interfere with the function of these receptors through its inhibitory effect at a common site in the pathway of receptor-mediated cyclic GMP formation.

摘要

利用完整的小鼠神经母细胞瘤细胞(克隆N1E-115)研究了锂离子(Li+)对受体介导的环鸟苷酸(一种假定的第二信使)合成的影响。氯化锂以相同的浓度依赖性(半数抑制浓度约为12 mM)、饱和且可逆的方式强烈抑制神经肽、神经降压素、血管紧张素II和缓激肽刺激的环鸟苷酸形成。在藜芦碱存在的情况下,藜芦碱是一种通过刺激钠通道可增加Li+进入细胞的生物碱,Li+更有效地抑制神经降压素刺激的环鸟苷酸形成(半数抑制浓度 = 7 mM)。未观察到Li+对磷酸二酯酶(EC 3.1.4.17)活性有影响。这些结果表明,Li+可能通过其在受体介导的环鸟苷酸形成途径中的共同位点的抑制作用来干扰这些受体的功能。

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