Millatt L J, Jackson R, Williams B C, Whitley G S
Department of Cellular and Molecular Sciences, St George's Hospital Medical School, London UK.
J Mol Endocrinol. 1993 Apr;10(2):163-9. doi: 10.1677/jme.0.0100163.
Sodium nitroprusside spontaneously breaks down in solution to produce the vasodilator nitric oxide. In many cell types, this stimulates the cytosolic form of the enzyme guanylate cyclase, resulting in the elevation of cyclic GMP (cGMP). We have investigated the effect of sodium nitroprusside on the generation of cGMP in primary human thyrocytes and the SV40-transfected human thyroid cell line SGHTL-189. A dose-dependent increase in cGMP was obtained and the maximum response was observed with concentrations above 10 microM sodium nitroprusside in both cell types. Methylene blue (50 microM) had no significant effect on basal cGMP production but inhibited the effect of sodium nitroprusside at all concentrations tested, thus demonstrating that the effect was due to nitric oxide. Sodium nitroprusside had no effect on cyclic AMP (cAMP) production in these cells. TSH at 100 and 1000 microU/ml significantly stimulated the production of cAMP, but not that of cGMP, in primary human thyrocytes. Sodium nitroprusside had no significant effect on basal or TSH-stimulated triiodothyronine secretion in primary human thyrocytes. Forskolin (10 microM) significantly stimulated cAMP production in both primary thyrocytes and SGHTL-189 cells. Although forskolin had no significant effect on basal cGMP production, sodium nitroprusside-stimulated cGMP production was significantly reduced by forskolin. However, this inhibitory effect was not related to the production of cAMP.
硝普钠在溶液中会自发分解产生血管舒张剂一氧化氮。在许多细胞类型中,这会刺激胞质形式的鸟苷酸环化酶,导致环磷酸鸟苷(cGMP)水平升高。我们研究了硝普钠对原代人甲状腺细胞和SV40转染的人甲状腺细胞系SGHTL-189中cGMP生成的影响。在两种细胞类型中,均观察到cGMP呈剂量依赖性增加,且在硝普钠浓度高于10微摩尔时出现最大反应。亚甲蓝(50微摩尔)对基础cGMP生成无显著影响,但在所有测试浓度下均抑制硝普钠的作用,从而表明该作用是由一氧化氮引起的。硝普钠对这些细胞中环磷酸腺苷(cAMP)的生成无影响。100和1000微单位/毫升的促甲状腺激素(TSH)显著刺激原代人甲状腺细胞中cAMP的生成,但不刺激cGMP的生成。硝普钠对原代人甲状腺细胞中基础或TSH刺激的三碘甲状腺原氨酸分泌无显著影响。福司可林(10微摩尔)显著刺激原代甲状腺细胞和SGHTL-189细胞中cAMP的生成。尽管福司可林对基础cGMP生成无显著影响,但福司可林可显著降低硝普钠刺激的cGMP生成。然而,这种抑制作用与cAMP的生成无关。