Biggs Jason S, Wan Jie, Cutler N Shane, Hakkola Jukka, Uusimäki Päivi, Raunio Hannu, Yost Garold S
Department of Pharmacology and Toxicology, University of Utah, Salt Lake City, UT 84112-5820, USA.
Mol Pharmacol. 2007 Sep;72(3):514-25. doi: 10.1124/mol.106.033795. Epub 2007 Jun 4.
Two vital enzymes of the CYP3A subfamily, CYP3A4 and CYP3A5, are differentially expressed in the human lung. However, the molecular mechanisms that regulate tissue-selective expression of the genes are poorly understood. The ability of the 5' upstream promoter region of these two genes to drive luciferase reporter activities in human lung A549 cells was dramatically different. The CYP3A5 promoter region activated luciferase gene expression by 10-fold over the promoterless construct, whereas the CYP3A4 promoter did not drive expression. Sequence comparisons of the promoters identified a 57-base pair insertion in the CYP3A4 promoter region (-71 to -127) that was absent in the CYP3A5 promoter. Deletion of the 57-bp motif from CYP3A4 or insertion into the CYP3A5 promoter, showed that this motif represses CYP3A4 expression in lung. EMSA analysis using nuclear extracts from either A549 cells or human lung tissues showed two specific protein/DNA complexes formed with the (32)P-labeled CYP3A4 57-bp oligonucleotide. EMSA analyses identified two E-box motifs as the minimal specific cis-elements. Supershift assays with antibodies directed against known double- or single-E-box binding factors (TAL1, deltaEF1, E2A, HEB, etc.) failed to identify this factor as a previously characterized trans-acting double E-box binding protein. These results demonstrated that the 5'-upstream region of CYP3A4 contains an active putative double E-box repressor motif, not present in the 5'-upstream region of the CYP3A5 gene, that attenuates CYP3A4 expression in the human lung. We believe that this is the first documented case in which a cytochrome P450 gene is actively repressed in a tissue-specific manner.
细胞色素P450 3A亚家族的两种重要酶CYP3A4和CYP3A5在人肺中差异表达。然而,调节这些基因组织选择性表达的分子机制尚不清楚。这两个基因5'上游启动子区域在人肺A549细胞中驱动荧光素酶报告基因活性的能力存在显著差异。CYP3A5启动子区域使荧光素酶基因表达比无启动子构建体高10倍,而CYP3A4启动子则不驱动表达。启动子的序列比较发现,CYP3A4启动子区域(-71至-127)有一个57个碱基对的插入片段,而CYP3A5启动子中没有。从CYP3A4中删除57-bp基序或插入CYP3A5启动子,结果表明该基序抑制肺中CYP3A4的表达。使用A549细胞或人肺组织的核提取物进行的电泳迁移率变动分析(EMSA)显示,与(32)P标记的CYP3A4 57-bp寡核苷酸形成了两种特异性蛋白质/DNA复合物。EMSA分析确定两个E-box基序为最小特异性顺式元件。用针对已知双E-box或单E-box结合因子(TAL1、deltaEF1、E2A、HEB等)的抗体进行的超迁移分析未能将该因子鉴定为先前表征的反式作用双E-box结合蛋白。这些结果表明,CYP3A4的5'上游区域包含一个活性推定双E-box抑制基序,该基序不存在于CYP3A5基因的5'上游区域,可减弱人肺中CYP3A4的表达。我们认为,这是细胞色素P450基因以组织特异性方式被主动抑制的首个记录案例。