Bommer U A, Lazaris-Karatzas A, De Benedetti A, Nürnberg P, Benndorf R, Bielka H, Sonenberg N
Division of Biochemistry, St. George's Hospital Medical School, University of London, UK.
Cell Mol Biol Res. 1994;40(7-8):633-41.
Synthesis of the mammalian growth-related protein P23 is rapidly induced after serum stimulation of mouse fibroblasts and Ehrlich ascites tumour cells. This induction occurs at the translational level. Growth-induction leads also to an increase in phosphorylation of the rate-limiting initiation factor eIF-4E. Here, we present the following evidence indicating the involvement of eIF-4E in the regulation of P23 synthesis: 1) P23 synthesis is induced by the same mitogenic stimuli which lead to enhanced eIF-4E phosphorylation. 2) Upon heat shock treatment of Ehrlich ascites cells (which results in immediate dephosphorylation and concomitant inactivation of eIF-4E), P23 synthesis is rapidly shut off. 3) In control NIH 3T3 cells, P23 synthesis is readily induced by growth stimulation. This response is strongly diminished in cells overexpressing eIF-4E, and the basal level of P23 synthesis is elevated in these cells. Overexpression of a nonfunctional mutant of eIF-4E diminishes the basal level of P23 synthesis as well as the serum-response of the cells with respect to P23 induction. 4) Cells transformed by overexpression of the ras or src genes in which eIF-4E is highly phosphorylated do not show any inducibility of P23 synthesis. 5) HeLa cells expressing antisense RNA of eIF-4E, have reduced levels of eIF-4E/F and show reduced rates of growth and protein synthesis. In these cells the total amount of P23 protein is about 50% compared with control cells. The results suggest that P23 is one of the gene products, the synthesis of which is regulated by eIF-4E activity.
在对小鼠成纤维细胞和艾氏腹水肿瘤细胞进行血清刺激后,哺乳动物生长相关蛋白P23的合成会迅速被诱导。这种诱导发生在翻译水平。生长诱导还会导致限速起始因子eIF-4E的磷酸化增加。在此,我们提供以下证据表明eIF-4E参与了P23合成的调控:1)P23合成由相同的促有丝分裂刺激诱导,这些刺激会导致eIF-4E磷酸化增强。2)对艾氏腹水细胞进行热休克处理(这会导致eIF-4E立即去磷酸化并伴随失活)后,P23合成迅速停止。3)在对照NIH 3T3细胞中,生长刺激很容易诱导P23合成。在过表达eIF-4E的细胞中,这种反应会大大减弱,并且这些细胞中P23合成的基础水平会升高。过表达无功能的eIF-4E突变体可降低P23合成的基础水平以及细胞对P23诱导的血清反应。4)通过过表达ras或src基因转化的细胞中,eIF-4E高度磷酸化,这些细胞中P23合成没有任何诱导性。5)表达eIF-4E反义RNA的HeLa细胞,其eIF-4E/F水平降低,生长和蛋白质合成速率也降低。与对照细胞相比,这些细胞中P23蛋白的总量约为50%。结果表明,P23是其合成受eIF-4E活性调控的基因产物之一。