Wang X, Campbell L E, Miller C M, Proud C G
Department of Anatomy and Physiology, University of Dundee, Dundee DD1 4HN, U.K.
Biochem J. 1998 Aug 15;334 ( Pt 1)(Pt 1):261-7. doi: 10.1042/bj3340261.
Incubation of Chinese hamster ovary cells without amino acids for up to 60 min caused a rapid marked decrease in p70 S6 kinase activity and increased binding of initiation factor eIF4E to its inhibitory regulator protein 4E-BP1. This was associated with dephosphorylation of 4E-BP1 and eIF4E and dissociation of eIF4E from eIF4G. All these effects were rapidly reversed by resupplying a mixture of amino acids and this was blocked by rapamycin and by inhibitors of phosphatidylinositol 3-kinase, implying a role for phosphatidylinositol 3-kinase in the signalling pathway linking amino acids with the control of p70 S6 kinase activity and the phosphorylation of these translation factors. Amino acid withdrawal also led to changes in the phosphorylation of other translation factors; phosphorylation of eIF4E decreased whereas elongation factor eEF2 became more heavily phosphorylated, each of these changes being associated with decreased activity of the factor in question. Earlier studies have suggested that protein kinase B (PKB) may act upstream of p70 S6 kinase. However, amino acids did not affect the activity of PKB, indicating that amino acids activate p70 S6 kinase through a pathway independent of this enzyme. Studies with individual amino acids suggested that the effects on p70 S6 kinase activity and translation-factor phosphorylation were independent of cell swelling. The data show that amino acid supply regulates multiple translation factors in mammalian cells.
将中国仓鼠卵巢细胞在无氨基酸条件下培养长达60分钟,会导致p70 S6激酶活性迅速显著下降,并增加起始因子eIF4E与其抑制调节蛋白4E - BP1的结合。这与4E - BP1和eIF4E的去磷酸化以及eIF4E与eIF4G的解离有关。重新供应氨基酸混合物可迅速逆转所有这些效应,而雷帕霉素和磷脂酰肌醇3 -激酶抑制剂可阻断这种逆转,这意味着磷脂酰肌醇3 -激酶在将氨基酸与p70 S6激酶活性控制及这些翻译因子磷酸化相联系的信号通路中起作用。氨基酸缺乏还导致其他翻译因子磷酸化发生变化;eIF4E的磷酸化减少,而延伸因子eEF2的磷酸化程度增加,这些变化均与相关因子活性降低有关。早期研究表明蛋白激酶B(PKB)可能在p70 S6激酶上游起作用。然而,氨基酸并不影响PKB的活性,表明氨基酸通过独立于该酶的途径激活p70 S6激酶。对单个氨基酸的研究表明,对p70 S6激酶活性和翻译因子磷酸化的影响与细胞肿胀无关。数据表明氨基酸供应调节哺乳动物细胞中的多种翻译因子。