Vallian S, Gäken J A, Gingold E B, Kouzarides T, Chang K S, Farzaneh F
Division of Laboratory Medicine, The University of Texas M.D. Anderson Cancer Center, Houston 77030, USA.
Oncogene. 1998 Jun 4;16(22):2843-53. doi: 10.1038/sj.onc.1201837.
The growth and transformation suppressor function of promyelocytic leukemia (PML) protein are disrupted in acute promyelocytic leukemia (APL) as a result of its fusion to the RARalpha gene by t(15;17) translocation. There is significant sequence homology between the dimerization domain of PML and the Fos family of proteins, which imply that PML may be involved in AP-1 activity. Here we show that PML can cooperate with Fos to stimulate its AP-1-mediated transcriptional activity. Cotransfection of PML with GAL4/Fos strongly induced Fos-mediated activation of GAL4-responsive reporters, indicating a functional interaction between Fos and PML in vivo. Deletion analysis of Fos and PML demonstrated that the intact C-terminal domain of Fos (containing the dimerization domain), and the RING-finger, B1 box and nuclear localization domains of PML are involved in the cooperative activity of Fos and PML. Immunoprecipitation and electrophoretic mobility shift assay showed that PML is associated with the AP-1 complex. PMLRARalpha was also found to enhance the transcriptional activity of GAL4/Fos. The addition of retinoic acid abrogated the PMLRARalpha, but not PML-induced stimulation of GAL4/Fos activity in a dose-dependent manner. This study demonstrated that PML is involved in the AP-1 complex and can modulate Fos-mediated transcriptional activity, which may contribute to its growth suppressor function.
在急性早幼粒细胞白血病(APL)中,早幼粒细胞白血病(PML)蛋白的生长和转化抑制功能因t(15;17)易位使其与维甲酸受体α(RARα)基因融合而受到破坏。PML的二聚化结构域与Fos蛋白家族之间存在显著的序列同源性,这表明PML可能参与激活蛋白-1(AP-1)的活性。在此我们表明,PML可与Fos协同刺激其AP-1介导的转录活性。PML与GAL4/Fos共转染强烈诱导Fos介导的GAL4反应性报告基因的激活,表明Fos与PML在体内存在功能相互作用。对Fos和PML的缺失分析表明,Fos完整的C末端结构域(包含二聚化结构域)以及PML的环指结构域、B1盒结构域和核定位结构域参与了Fos与PML的协同活性。免疫沉淀和电泳迁移率变动分析表明,PML与AP-1复合物相关。还发现PML-RARα增强了GAL4/Fos的转录活性。加入视黄酸可消除PML-RARα,但不能消除PML诱导的GAL4/Fos活性的刺激,且呈剂量依赖性。本研究表明,PML参与AP-1复合物并可调节Fos介导的转录活性,这可能有助于其生长抑制功能。