Pisarev M A, Aiello L O, Kleiman de Pisarev D L
Acta Endocrinol (Copenh). 1976 Oct;83(2):313-20. doi: 10.1530/acta.0.0830313.
Potassium iodide (KI) has been shown to impair thyroid protein biosynthesis both in vivo and in vitro. The present study was performed in order to clarify its mechanism of action. Ribonucleic acid (RNA) synthesis was studied in beef thyroid slices with either [32P] or [3H]-uridine as labelled precursors. Both KI and thyroxine (T4) at 10(-5) M significantly decreased RNA labelling under our conditions. In other experiments RNA degradation was examined in pulse-labelled and actinomycin D-treated slices. KI did not modify the degradation of the [3H]-RNA thus indicating that it interferes with the biosynthesis rather than with the degradation of RNA. Taking the perchloric acid soluble radioactivity as a rough index of the precursor pool the present results would indicate an action at this level. Both KC1O4 and methylmercapto-imidazole relieved the gland from the inhibitory action of KI, supporting the view that an intracellular and organified form of iodine is responsible for this action. Since T4 also reproduced the effects of KI on RNA synthesis we would like to propose iodothyronines as the intermediates of this action. Cyclic AMP has been shown to stimulate thyroid protein biosynthesis. The present results demonstrate an action at the RNA level. Cyclic AMP increased both the PCA-soluble and RNA-linked radioactivity, thus suggesting an effect at the RNA precursor pool. KI at 10(-5) M blocked the action of 2 mM cyclic AMP.
碘化钾(KI)已被证实在体内和体外均会损害甲状腺蛋白质的生物合成。进行本研究是为了阐明其作用机制。以[32P]或[3H] - 尿苷作为标记前体,研究了牛肉甲状腺切片中的核糖核酸(RNA)合成。在我们的实验条件下,10^(-5) M的KI和甲状腺素(T4)均显著降低了RNA标记。在其他实验中,检测了脉冲标记并经放线菌素D处理的切片中的RNA降解情况。KI并未改变[3H] - RNA的降解,因此表明它干扰的是RNA的生物合成而非降解。以高氯酸可溶性放射性作为前体池的粗略指标,目前的结果表明在这一水平上存在作用。高氯酸钾(KC1O4)和甲基巯基咪唑均可解除KI对腺体的抑制作用,这支持了一种观点,即细胞内有机化形式的碘是造成这种作用的原因。由于T4也重现了KI对RNA合成的影响,我们推测碘甲状腺原氨酸是这一作用的中间介质。环磷酸腺苷(cAMP)已被证明可刺激甲状腺蛋白质的生物合成。目前的结果证明了在RNA水平上的作用。cAMP增加了高氯酸可溶性和与RNA相关的放射性,因此表明对RNA前体池有影响。10^(-5) M的KI阻断了2 mM cAMP的作用。