Miau L H, Chang C J, Tsai W H, Lee S C
Institute of Biochemical Sciences, College of Science, National Taiwan University, Taipei.
Mol Cell Biol. 1997 Jan;17(1):230-9. doi: 10.1128/MCB.17.1.230.
Expression of the alpha-1 acid glycoprotein (AGP) gene (agp) is activated by a key transcription factor, AGP/enhancer-binding protein (AGP/EBP, commonly called C/EBP beta), in the liver during the acute-phase response. In addition to this positive regulation, agp is negatively regulated by nucleolin (T. H. Yang et al., Mol. Cell. Biol. 14:6068-6074, 1994). Other factors involve in positive regulation of the agp gene are poorly characterized. In a systematic search for factors that may interact with AGP/EBP, we have identified Nopp 140, a phosphoprotein of 140 kDa, by immunoaffinity chromatography. Nopp 140 not only functions as a transcriptional activator per se but also interacts with AGP/EBP to synergistically activate the agp gene in an AGP/EBP-binding motif-dependent manner. In addition to interacting with AGP/EBP, Nopp140 interacts specifically with TFIIB. Distinct regions of Nopp140 that interact with AGP/EBP and TFIIB have been characterized. The sequence of Nopp140 contains several stretches of serine- and acidic amino acid-rich sequences which are also found in ICP4 of herpes simplex virus type 1, a known transcription factor that interacts with TFIIB. The physical interaction between TFIIB and wild-type Nopp140 or several deletion mutants of Nopp140 correlates with the ability of Nopp140 to activate the agp gene synergistically with AGP/EBP. Thus, the molecular mechanism for agp gene activation may involve the interaction of AGP/EBP and TFIIB mediated by coactivator Nopp140.
在急性期反应期间,肝脏中的α-1酸性糖蛋白(AGP)基因(agp)的表达由关键转录因子AGP/增强子结合蛋白(AGP/EBP,通常称为C/EBPβ)激活。除了这种正调控外,agp还受到核仁素的负调控(T. H. Yang等人,《分子细胞生物学》14:6068 - 6074,1994)。其他参与agp基因正调控的因子特征尚不明确。在系统搜索可能与AGP/EBP相互作用的因子时,我们通过免疫亲和色谱法鉴定出了一种140 kDa的磷蛋白Nopp 140。Nopp 140不仅本身作为转录激活因子发挥作用,还与AGP/EBP相互作用,以依赖AGP/EBP结合基序的方式协同激活agp基因。除了与AGP/EBP相互作用外,Nopp140还与TFIIB特异性相互作用。已经对Nopp140与AGP/EBP和TFIIB相互作用的不同区域进行了表征。Nopp140的序列包含几段富含丝氨酸和酸性氨基酸的序列,在单纯疱疹病毒1型的ICP4中也有发现,ICP4是一种已知的与TFIIB相互作用的转录因子。TFIIB与野生型Nopp140或Nopp140的几个缺失突变体之间的物理相互作用与Nopp140与AGP/EBP协同激活agp基因的能力相关。因此,agp基因激活的分子机制可能涉及由共激活因子Nopp(140介导的AGP/EBP和TFIIB的相互作用。