Berthelsen J, Vandekerkhove J, Blasi F
Department of Genetics and Biology of Microorganisms, University of Milano, Via Celoria 26, 20135 Milano, Italy.
J Biol Chem. 1996 Feb 16;271(7):3822-30. doi: 10.1074/jbc.271.7.3822.
Basal as well as induced transcription from the human urokinase-type plasminogen activator gene requires an enhancer containing two elements, a combined PEA3/AP-1 and a consensus AP-1 site. The integrity of each of these binding sites as well as their cooperation is required for activating transcription. The two elements are separated by a 74-base pair cooperation mediating (COM) region required for the cooperation between the transactivating sites. The COM region contains binding sites for four different unidentified urokinase-type plasminogen activator enhancer factors (UEF 1 to 4), all four required for correct COM activity. We have purified UEF3 from HeLa nuclear extracts by several chromatographic steps including DNA affinity purification. Purification and UV cross-linking data showed that UEF3 is a complex of three polypeptides (p40, p50, and p64). Amino acid sequence from one peptide of p64 was obtained, which showed no homology to other known proteins. Both crude and purified UEF3 specifically bound to the sequence TGACAG as shown by electrophoretic mobility shifts and methylation interference studies. DNA-binding specificity of purified UEF3 was identical to that of NIP, a non-characterized factor binding and regulating multiple AP-1-regulated promoters like stromelysin and interleukin-3. Thus UEF3 appears to be a general DNA-binding factor involved in modulating the transcriptional response of AP-1 containing promoters.
人尿激酶型纤溶酶原激活剂基因的基础转录以及诱导转录均需要一个含有两个元件的增强子,即一个组合的PEA3/AP-1元件和一个共有AP-1位点。激活转录需要这些结合位点各自的完整性以及它们之间的协同作用。这两个元件被一个74碱基对的协同作用介导(COM)区域隔开,该区域是反式激活位点之间协同作用所必需的。COM区域包含四个不同的未鉴定的尿激酶型纤溶酶原激活剂增强子因子(UEF 1至4)的结合位点,所有这四个因子对于正确的COM活性都是必需的。我们通过包括DNA亲和纯化在内的几个色谱步骤从HeLa细胞核提取物中纯化了UEF3。纯化和紫外线交联数据表明,UEF3是由三种多肽(p40、p50和p64)组成的复合物。获得了p64一个肽段的氨基酸序列,该序列与其他已知蛋白质无同源性。电泳迁移率变动分析和甲基化干扰研究表明,粗提的和纯化的UEF3均能特异性结合序列TGACAG。纯化的UEF3的DNA结合特异性与NIP相同,NIP是一种未被鉴定的因子,可结合并调节多个AP-1调控的启动子,如基质金属蛋白酶和白细胞介素-3。因此,UEF3似乎是一种参与调节含AP-1启动子转录反应的通用DNA结合因子。