Zhang Fang, Lin Meihong, Abidi Parveen, Thiel Gerald, Liu Jingwen
Department of Veterans Affairs Palo Alto Health Care System, Palo Alto, California 94304, USA.
J Biol Chem. 2003 Nov 7;278(45):44246-54. doi: 10.1074/jbc.M305564200. Epub 2003 Aug 28.
The sterol-independent regulatory element (SIRE) of the LDL receptor (LDLR) promoter mediates oncostatin M (OM)-induced transcription of the LDLR gene through a cholesterol-independent pathway. Our prior studies have detected specific associations of the zinc finger transcription factor Egr1 with the SIRE sequence in OM-stimulated HepG2 cells. Because the SIRE motif is composed of a c/EBP binding site and a cAMP response element, both of which are quite divergent from the classical GC-rich Egr1 recognition sequences, we hypothesized that Egr1 may regulate LDLR transcription through interacting with members of the c/EBP and CREB families. Here, we show that treating HepG2 cells with OM specifically leads to prominent increases of the levels of c/EBPbeta and Egr1 bound to the LDLR promoter in vivo. In vitro, the binding of Egr1 to the SIRE sequence is weak, but is strikingly enhanced in the presence of HepG2 nuclear extract. Mammalian two-hybrid assays demonstrate that the N-terminal transactivation domain of Egr1 specifically interacts with c/EBPbeta but not with c/EBPalpha or CREB. The OM treatment further enhances this interaction, resulting in a large increase in the Egr1 transactivating activity. The direct protein to protein contact between Egr1 and c/EBPbeta is also demonstrated by co-immunoprecipitation experiments. Furthermore, we show that a mutation of the phosphorylation motif of c/EBPbeta diminished the OM-stimulated interaction of Egr1 and c/EBPbeta. Taken together, we provide strong evidence that Egr1 regulates LDLR transcription via a novel mechanism of protein-protein interaction with c/EBPbeta.
低密度脂蛋白受体(LDLR)启动子的固醇非依赖性调节元件(SIRE)通过胆固醇非依赖性途径介导抑瘤素M(OM)诱导的LDLR基因转录。我们之前的研究已在OM刺激的HepG2细胞中检测到锌指转录因子Egr1与SIRE序列的特异性结合。由于SIRE基序由一个c/EBP结合位点和一个cAMP反应元件组成,这两者与经典的富含GC的Egr1识别序列有很大差异,我们推测Egr1可能通过与c/EBP和CREB家族成员相互作用来调节LDLR转录。在此,我们表明用OM处理HepG2细胞会在体内特异性导致与LDLR启动子结合的c/EBPβ和Egr1水平显著增加。在体外,Egr1与SIRE序列的结合较弱,但在存在HepG2核提取物的情况下会显著增强。哺乳动物双杂交实验表明,Egr1的N端反式激活结构域特异性地与c/EBPβ相互作用,而不与c/EBPα或CREB相互作用。OM处理进一步增强了这种相互作用,导致Egr1反式激活活性大幅增加。免疫共沉淀实验也证明了Egr1与c/EBPβ之间直接的蛋白质-蛋白质相互作用。此外,我们表明c/EBPβ磷酸化基序的突变会减弱OM刺激的Egr1与c/EBPβ的相互作用。综上所述,我们提供了有力证据表明Egr1通过与c/EBPβ进行蛋白质-蛋白质相互作用的新机制来调节LDLR转录。