Misra Uma Kant, Pizzo Salvatore Vincent
Department of Pathology, Duke University Medical Center, Durham, NC 27710, USA.
J Cell Biochem. 2007 Mar 1;100(4):1022-33. doi: 10.1002/jcb.21086.
Recently, we reported that silencing CREB gene expression by RNAi significantly attenuates forskolin-induced activation of Akt1. We now provide evidence that forskolin-treatment causes transcriptional and translational upregulation of Akt1 in macrophages. Akt synthesis was demonstrated by [(14)C]leucine or [(35)S] incorporation into newly synthesized Akt1 protein. Akt protein levels increased by approximately 1.5-fold after only a 5 min exposure of macrophages to forskolin. Akt1 levels thereafter rapidly returned to basal values (t(1/2) approximately 15 min). Maximal upregulation of Akt1 occurred in cells treated with 10 microM forskolin. Forskolin-dependent Akt1 synthesis was abolished by pretreating the cells with CREB-directed dsRNA as demonstrated at both the message and protein level, as well as by determining the synthesis of [(35)S]-labeled Akt1 protein. The PKA inhibitor H-89, greatly attenuated forskolin-induced Akt1 synthesis. Transcriptional and translational inhibitors also greatly reduced Akt1 synthesis in forskolin-stimulated [(14)C]leucine-labeled macrophages. Using a chromatin immunoprecipitation assay, we demonstrate that CREB binds to a CRE binding domain of the Akt1 gene promoter. In conclusion, we show here for the first time transcriptional upregulation of Akt1 by CREB, based upon Akt1 protein synthesis and its modulation by transitional and translational inhibitors in forskolin-stimulated cells, Akt1 protein. and mRNA levels upon silencing CREB gene expression, and binding of CREB to the Akt1 gene promoter.
最近,我们报道通过RNA干扰使CREB基因表达沉默可显著减弱福斯高林诱导的Akt1激活。我们现在提供证据表明,福斯高林处理可导致巨噬细胞中Akt1的转录和翻译上调。通过将[¹⁴C]亮氨酸或[³⁵S]掺入新合成的Akt1蛋白来证明Akt的合成。巨噬细胞仅暴露于福斯高林5分钟后,Akt蛋白水平就增加了约1.5倍。此后,Akt1水平迅速恢复到基础值(半衰期约15分钟)。用10μM福斯高林处理的细胞中Akt1出现最大上调。如在信息和蛋白质水平所证明的,以及通过测定[³⁵S]标记的Akt1蛋白的合成,用针对CREB的双链RNA预处理细胞可消除福斯高林依赖性Akt1合成。PKA抑制剂H-89大大减弱了福斯高林诱导的Akt1合成。转录和翻译抑制剂也大大降低了福斯高林刺激的[¹⁴C]亮氨酸标记的巨噬细胞中Akt1的合成。使用染色质免疫沉淀试验,我们证明CREB与Akt1基因启动子的CRE结合域结合。总之,我们首次在此表明,基于福斯高林刺激的细胞中Akt1蛋白合成及其受翻译和转录抑制剂的调节、CREB基因表达沉默时的Akt1蛋白和mRNA水平,以及CREB与Akt1基因启动子的结合,CREB可使Akt1转录上调。