Kojima S, Matsuki O, Nomura T, Kubodera A, Honda Y, Honda S, Tanooka H, Wakasugi H, Yamaoka K
Research Institute for Biological Sciences, Science University of Tokyo, 2669 Yamazaki, Noda-shi, Chiba 278, Japan.
Biochim Biophys Acta. 1998 Aug 24;1381(3):312-8. doi: 10.1016/s0304-4165(98)00043-9.
We examined the elevation of the reduced form of glutathione (GSH)level and the induction of MRNAs for proteins involved in the synthesis and regeneration of GSH in the liver of mice after low-dose gamma-ray irradiation. The liver GSH level increased soon after irradiation with 50 cGy of gamma-rays, reached a maximum at around 12 h post-treatment. The mRNA of gamma-glutamylcysteine synthetase (gamma-GCS), the rate-limiting enzyme for de novo synthesis for GSH, showed a small increase that peaked at 6 h after gamma-ray irradiation at a dose of 50 cGy. Only a small increase in gamma-GCS activity was observed throughout the 24-h post-irradiation period. In the case of glutathione reductase (GR), which is involved in the regeneration of GSH from the oxidized form (GSSG), the mRNA level peaked strongly at 1 h, while the activity peaked at twice the control level 12 h after irradiation. The level of mRNA for thioredoxin (TRX), which contributes to GSH biosynthesis by supplying cysteine to the de novo pathway, peaked at 1 h and declined thereafter, while the activity peaked at 3 h and then declined sharply. These results indicate that the increase in endogenous GSH immediately following low-dose gamma-ray irradiation is predominantly due to operation of the regeneration cycle and not de novo synthesis. We also examined the dependence of mRNA induction on the gamma-ray dose.
我们检测了低剂量γ射线照射后小鼠肝脏中还原型谷胱甘肽(GSH)水平的升高以及参与GSH合成与再生的蛋白质的mRNA诱导情况。用50 cGy的γ射线照射后,肝脏GSH水平很快升高,在处理后约12小时达到最大值。γ-谷氨酰半胱氨酸合成酶(γ-GCS)是GSH从头合成的限速酶,其mRNA在50 cGy剂量的γ射线照射后6小时出现小幅增加并达到峰值。在照射后的24小时内,仅观察到γ-GCS活性有小幅增加。对于参与将氧化型谷胱甘肽(GSSG)再生为GSH的谷胱甘肽还原酶(GR),其mRNA水平在1小时时强烈峰值,而活性在照射后12小时达到对照水平的两倍峰值。硫氧还蛋白(TRX)的mRNA水平在1小时时达到峰值,随后下降,TRX通过向从头合成途径提供半胱氨酸促进GSH生物合成,其活性在3小时时达到峰值,然后急剧下降。这些结果表明,低剂量γ射线照射后内源性GSH的立即增加主要是由于再生循环的作用,而非从头合成。我们还检测了mRNA诱导对γ射线剂量的依赖性。