Jackson J G, Kreisberg J I, Koterba A P, Yee D, Brattain M G
Department of Surgery, University of Texas Health Science Center at San Antonio, 78229, USA.
Oncogene. 2000 Sep 21;19(40):4574-81. doi: 10.1038/sj.onc.1203825.
Akt, when activated by IGF/insulin, can phosphorylate forkhead transcription factors. We undertook this study to determine whether epidermal growth factor (EGF) treatment could produce a signaling cascade resulting in phosphorylation of the forkhead transcription factor FKHR in a breast cancer cell line, MDA-MB-231. After establishing ErbB1, cbl, PI3 kinase and Akt were activated in EGF treated MDA-MB-231, we determined by immunoblot with FKHR antiserum that the electrophoretic mobility of FKHR was retarded after EGF treatment. This mobility retardation was reversible by treatment with alkaline phosphatase, and immunoblot with phospho-Ser256 FKHR antibody further confirmed phosphorylation on an Akt consensus site after EGF treatment. EGF stimulated FKHR phosphorylation was blocked by the PI3 kinase inhibitor LY294002, and the ErbB1 inhibitor AG1478. FKHR immunoblotting after purification of nuclear and cytoplasmic proteins showed that EGF induced a simultaneous increase of FKHR in the cytoplasm and decrease in the nucleus. This finding was confirmed by immunofluorescence staining. Treatment of cells with pharmacological inhibitors of PI3 kinase or ErbB1 blocked this effect. Thus, these results demonstrate the phosphorylation and nuclear exclusion of FKHR after EGF treatment by a PI3 kinase dependent mechanism, and represent the first report of growth factor regulation of endogenous FKHR localization.
Akt在被胰岛素样生长因子(IGF)/胰岛素激活后,能够使叉头转录因子发生磷酸化。我们开展这项研究以确定表皮生长因子(EGF)处理是否会在乳腺癌细胞系MDA-MB-231中产生导致叉头转录因子FKHR磷酸化的信号级联反应。在用抗FKHR血清进行免疫印迹法确定在经EGF处理的MDA-MB-231中ErbB1、cbl、PI3激酶和Akt被激活后,我们发现经EGF处理后FKHR的电泳迁移率减慢。用碱性磷酸酶处理可使这种迁移率减慢现象逆转,并且用磷酸化丝氨酸256 FKHR抗体进行免疫印迹进一步证实了经EGF处理后在Akt共有位点上发生了磷酸化。EGF刺激的FKHR磷酸化被PI3激酶抑制剂LY294002和ErbB1抑制剂AG1478阻断。在纯化核蛋白和胞质蛋白后进行的FKHR免疫印迹显示,EGF诱导胞质中FKHR同时增加而核内FKHR减少。免疫荧光染色证实了这一发现。用PI3激酶或ErbB1的药理学抑制剂处理细胞可阻断这种效应。因此,这些结果证明了经EGF处理后FKHR通过PI3激酶依赖性机制发生磷酸化并被排除在细胞核外,这是内源性FKHR定位受生长因子调控的首次报道。