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通过直接与启动子相互作用,p53依赖性抑制尿苷磷酸化酶基因表达。

p53-dependent suppression of uridine phosphorylase gene expression through direct promoter interaction.

作者信息

Zhang D, Cao D, Russell R, Pizzorno G

机构信息

Department of Internal Medicine (Oncology), Yale University School of Medicine, New Haven, Connecticut 06520, USA.

出版信息

Cancer Res. 2001 Sep 15;61(18):6899-905.

Abstract

Uridine phosphorylase (UPase) is a key enzyme in the pyrimidine salvage pathway. It reversibly catalyzes the catabolism of uridine to uracil; controls the homeostatic regulation of uridine concentration in plasma and tissues; and plays a role in the intracellular activation of 5-fluorouracil. We cloned the murine UPase gene promoter, a 1703-bp fragment, and determined the transcription initiation sites located at +1 and +92 bp of the cDNA sequence. Through transient expression analysis of the 5'-flanking region of UPase gene, we have evaluated the promoter activity for a series of fragments with 5'- to 3'-deletion in murine breast cancer EMT-6 cells and immortalized murine fibroblast NIH 3T3 cells. Cotransfection of the UPase promoter constructs (from -1619 to -445) containing p53 binding motif with the wild-type p53 construct resulted in a significant reduction of luciferase activity; however, this effect disappeared with the additional deletion of the -445 to -274 sequence to suggest the existence in this promoter region of a putative p53 recognition element. Similar cotransfection in murine embryo fibroblasts p53-/- confirmed the inhibitory role of p53 on the UPase promoter activity. The specificity of the interaction is demonstrated by nuclear protein-specific binding to the putative p53 recognition sequence using gel mobility shift assay and DNase I footprinting analysis. These data indicate the UPase gene is a novel target of p53, and its expression is down-regulated by p53 at the promoter level.

摘要

尿苷磷酸化酶(UPase)是嘧啶补救途径中的关键酶。它可逆地催化尿苷分解代谢为尿嘧啶;控制血浆和组织中尿苷浓度的稳态调节;并在5-氟尿嘧啶的细胞内活化中发挥作用。我们克隆了小鼠UPase基因启动子,一个1703 bp的片段,并确定了位于cDNA序列+1和+92 bp处的转录起始位点。通过对UPase基因5'侧翼区域的瞬时表达分析,我们在小鼠乳腺癌EMT-6细胞和永生化小鼠成纤维细胞NIH 3T3细胞中评估了一系列5'至3'缺失片段的启动子活性。将含有p53结合基序的UPase启动子构建体(从-1619至-445)与野生型p53构建体共转染导致荧光素酶活性显著降低;然而,随着-445至-274序列的额外缺失,这种效应消失,表明在该启动子区域存在一个假定的p53识别元件。在小鼠胚胎成纤维细胞p53-/-中进行类似的共转染证实了p53对UPase启动子活性的抑制作用。使用凝胶迁移率变动分析和DNase I足迹分析,通过核蛋白与假定的p53识别序列的特异性结合证明了相互作用的特异性。这些数据表明UPase基因是p53的一个新靶点,其表达在启动子水平受到p53的下调。

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