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钙和鸟苷3':5'-单磷酸在乙酰胆碱对甲状腺代谢作用中的角色。

The role of calcium and guanosine 3':5'-monophosphate in the action of acetylcholine on thyroid metabolism.

作者信息

Decoster C, Mockel J, Van Sande J, Unger J, Dumont J E

出版信息

Eur J Biochem. 1980 Feb;104(1):199-208. doi: 10.1111/j.1432-1033.1980.tb04416.x.

Abstract

The role of calcium and guanosine 3':5'-monophosphate (cyclic GMP) in the regulation of thyroid metabolism has been investigated in dog thyroid slices. Carbamoylcholine enhanced glucose carbon-1 oxidation, protein iodination, cyclic GMP accumulation and decreased thyrotropin-induced adenosine 3':5'-monophosphate (cyclic AMP) accumulation and iodine secretion; it did not affect protein synthesis. The effects of carbamoylcholine were reproduced under various experimental conditions by supplementary calcium in the medium, ouabain, and in media in which Na+ had been replaced by choline chloride. They were inhibited by lanthanum. These results further support the hypothesis that free intracellular Ca2+ is the intracellular signal for carbamoylcholine effects and suggest that a Na+ -gradient-driven Ca2+ extrusion mechanism operates in the thyroid cell. Mn2+ reproduced the effect of Ca2+ on glucose oxidation, protein iodination and cyclic GMP accumulation in Ca2+ -depleted slices and medium, and thus mimicked some intracellular effects of Ca2+. On the other hand Mn2+ inhibited the carbamoylcholine effect on thyrotropin-induced thyroid secretion and cyclic AMP accumulation, and Ca2+ inhibited the Mn2+-induced cyclic GMP accumulation. This suggests that the two ions compete for the same channel. Similarly Mn2+ inhibited calcium effects in the presence of ionophore A23187. Procaine inhibited protein iodination under all conditions suggesting a primary effect; it also inhibited all carbamoylcholine and ouabain actions. However the drug did not inhibit the effects of choline chloride and its action was reversed by raising carbamoylcholine but not Ca2+ concentration; it is therefore doubtful that procaine acts by blocking Ca2+ channels. In media without added Ca2+, Mn2+ increased cyclic GMP accumulation but did not decrease thyrotropin-induced cyclic AMP accumulation or iodine secretion, which suggests that cyclic GMP cannot be the sole mediator of the latter two effects of carbamoylcholine.

摘要

在犬甲状腺切片中研究了钙和鸟苷3':5'-单磷酸(环鸟苷酸)在甲状腺代谢调节中的作用。氨甲酰胆碱可增强葡萄糖碳-1氧化、蛋白质碘化、环鸟苷酸积累,并降低促甲状腺素诱导的腺苷3':5'-单磷酸(环腺苷酸)积累和碘分泌;它不影响蛋白质合成。在各种实验条件下,通过在培养基中补充钙、哇巴因以及用氯化胆碱替代钠离子的培养基,均可重现氨甲酰胆碱的作用。镧可抑制这些作用。这些结果进一步支持了以下假说,即细胞内游离钙离子是氨甲酰胆碱作用的细胞内信号,并表明甲状腺细胞中存在一种由钠离子梯度驱动的钙离子外排机制。在缺乏钙离子的切片和培养基中,锰离子重现了钙离子对葡萄糖氧化、蛋白质碘化和环鸟苷酸积累的作用,从而模拟了钙离子的一些细胞内效应。另一方面,锰离子抑制了氨甲酰胆碱对促甲状腺素诱导的甲状腺分泌和环腺苷酸积累的作用,而钙离子则抑制了锰离子诱导的环鸟苷酸积累。这表明这两种离子竞争同一通道。同样,在离子载体A23187存在的情况下,锰离子也抑制了钙离子的作用。普鲁卡因在所有条件下均抑制蛋白质碘化,提示其具有主要作用;它还抑制了所有氨甲酰胆碱和哇巴因的作用。然而,该药物并未抑制氯化胆碱的作用,且通过提高氨甲酰胆碱而非钙离子浓度可逆转其作用;因此,普鲁卡因是否通过阻断钙离子通道发挥作用值得怀疑。在未添加钙离子的培养基中,锰离子增加了环鸟苷酸积累,但并未降低促甲状腺素诱导的环腺苷酸积累或碘分泌,这表明环鸟苷酸不可能是氨甲酰胆碱后两种作用的唯一介质。

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