Hua J, Hod Y
Department of Physiology and Biophysics, State University of New York, Stony Brook 11794-8661.
Mol Endocrinol. 1992 Sep;6(9):1418-24. doi: 10.1210/mend.6.9.1331775.
The role of protein synthesis in the control of phosphoenolpyruvate carboxykinase (PEPCK; 4.1.1.32) mRNA turnover was studied in FTO-2B rat hepatoma cells. A previous study demonstrated that incubation of these cells with cAMP prolongs the half-life of the otherwise short-lived PEPCK mRNA. The decay rate of PEPCK mRNA was also slowed in cells incubated with cycloheximide, but not in cells incubated with other translation inhibitors, such as puromycin or pactamycin, even though protein synthesis was inhibited 85-95% by these agents. No correlation was noted between the rate of L-[3H]valine incorporation into cellular proteins and PEPCK mRNA half-life, suggesting that protein synthesis per se is not required for breakdown of the mRNA. Exposure of cells to the translation initiation inhibitor pactamycin together with cycloheximide abolished the "slowing" effect of cycloheximide, and PEPCK mRNA decayed at the same rate as in cells incubated in the presence of pactamycin alone. In contrast, pactamycin did not reverse the effect of cAMP, and the mRNA decayed at the same slow rate in cells incubated in the presence of either (Bu)2cAMP alone or (Bu)2cAMP together with pactamycin. Since pactamycin promotes polysomes dissociation, these results suggest that cAMP enhances the stability of a polysome-free PEPCK mRNA. Furthermore, these results strongly indicate that neither the rapid decay of PEPCK mRNA nor the cAMP-mediated stabilization of the mRNA requires on-going protein synthesis.
在FTO - 2B大鼠肝癌细胞中研究了蛋白质合成在磷酸烯醇丙酮酸羧激酶(PEPCK;4.1.1.32)mRNA周转控制中的作用。先前的一项研究表明,用cAMP孵育这些细胞可延长原本半衰期较短的PEPCK mRNA的半衰期。在用环己酰亚胺孵育的细胞中,PEPCK mRNA的衰变率也减慢了,但在用其他翻译抑制剂(如嘌呤霉素或密旋霉素)孵育的细胞中则没有,尽管这些试剂可抑制蛋白质合成85 - 95%。未观察到L - [3H]缬氨酸掺入细胞蛋白质的速率与PEPCK mRNA半衰期之间的相关性,这表明mRNA降解本身并不需要蛋白质合成。将细胞暴露于翻译起始抑制剂密旋霉素和环己酰亚胺一起时,消除了环己酰亚胺的“减慢”作用,并且PEPCK mRNA的衰变速率与仅在密旋霉素存在下孵育的细胞中的衰变速率相同。相反,密旋霉素并没有逆转cAMP的作用,并且在单独存在(Bu)2cAMP或(Bu)2cAMP与密旋霉素一起孵育的细胞中,mRNA以相同的缓慢速率衰变。由于密旋霉素促进多核糖体解离,这些结果表明cAMP增强了无多核糖体的PEPCK mRNA的稳定性。此外,这些结果强烈表明,PEPCK mRNA的快速衰变和cAMP介导的mRNA稳定化都不需要正在进行的蛋白质合成。