Le H B, Vaisanen P A, Johnson J L, Raney A K, McLachlan A
Department of Molecular and Experimental Medicine, Scripps Research Institute, La Jolla, CA 92037.
DNA Cell Biol. 1994 May;13(5):473-85. doi: 10.1089/dna.1994.13.473.
The human muscle phosphofructokinase (HPFKM) p2 promoter contains sequence elements that are similar to the Sp1 transcription factor binding site consensus sequence. DNase I footprinting identified four regions of the HPFKM p2 promoter that bound purified Sp1. Gel retardation analysis using HeLa S3 nuclear extracts and purified Sp1 protein demonstrated that each of the four recognition elements bound the Sp1 transcription factor. The function of the HPFKM p2 promoter elements was examined in transient transfection assays using these binding sites cloned into a minimal promoter element. In Drosophila Schneider line-2 cells, each of these regulatory regions trans-activated transcription from a minimal promoter element in response to exogenously expressed Sp1. In addition, transcription from the HPFKM p2 promoter was shown to be trans-activated by exogenously expressed Sp1 in Drosophila Schneider line-2 cells. Deletion analysis of the HPFKM p2 promoter demonstrated that the promoter region between -66 and +16 was sufficient to confer sp1 responsiveness. This promoter region includes one of the regulatory elements footprinted by the purified Sp1 transcription factor and mediates the majority of the transcriptional activity from the HPFKM p2 promoter in the human cervical carcinoma cell line HeLa S3. This demonstrates that the HPFKM p2 promoter contains four functional Sp1 binding sites that may contribute to the level of transcription from this promoter in a variety of cell types.
人肌肉磷酸果糖激酶(HPFKM)p2启动子包含与Sp1转录因子结合位点共有序列相似的序列元件。DNase I足迹分析确定了HPFKM p2启动子中与纯化的Sp1结合的四个区域。使用HeLa S3细胞核提取物和纯化的Sp1蛋白进行的凝胶阻滞分析表明,四个识别元件中的每一个都与Sp1转录因子结合。在瞬时转染试验中,使用克隆到最小启动子元件中的这些结合位点,检测了HPFKM p2启动子元件的功能。在果蝇Schneider 2细胞系中,这些调控区域中的每一个都能响应外源表达的Sp1,从最小启动子元件反式激活转录。此外,在果蝇Schneider 2细胞系中,HPFKM p2启动子的转录也被外源表达的Sp1反式激活。对HPFKM p2启动子的缺失分析表明,-66至+16之间的启动子区域足以赋予对Sp1的反应性。该启动子区域包括纯化的Sp1转录因子足迹分析的调控元件之一,并介导人宫颈癌HeLa S3细胞系中HPFKM p2启动子的大部分转录活性。这表明HPFKM p2启动子包含四个功能性Sp1结合位点,这些位点可能有助于该启动子在多种细胞类型中的转录水平。