Noti J D, Reinemann B C, Petrus M N
Guthrie Research Institute, Sayre, Pennsylvania 18840, USA.
Mol Cell Biol. 1996 Jun;16(6):2940-50. doi: 10.1128/MCB.16.6.2940.
The leukocyte integrin gene, CD11c, is transcriptionally regulated and is expressed predominantly on differentiated cells of the myelomonocytic lineage. In this study we have demonstrated that the regions -72 to -63 and -132 to -104 of the CD11c promoter contain elements responsible for phorbol ester-induced differentiation of the myeloid cell line HL60. DNase I footprinting analysis revealed that these regions can bind purified Sp1, and supershift analysis with Sp1 antibody confirmed that Sp1 in HL60 nuclear extracts could bind these regions. Transfection analysis of CD11c promoter-chloramphenicol acetyltransferase constructs containing deletions of these Sp1-binding sites revealed that these sites are essential for expression of the CD11c gene in HL60 cells but not in the T-cell line Molt4 or the cervical carcinoma cell line HeLa. Moreover, cotransfection of pPacSp1 along with these CD11c promoter-chloramphenicol acetyltransferase constructs into Sp1-deficient Drosophila Schneider 2 cells verified that these sites are essential for Sp1-dependent expression of the CD11c promoter. In vivo genomic footprinting revealed that Sp1 contacts the CD11c promoter within the regions -69 to -63 and -116 to -105 in phorbol 12-myristate 13-acetate-differentiated HL60 cells but not in undifferentiated HL60 cells or in Molt4 or HeLa cells. Cotransfection assays in HL60 cells revealed that Sp1 acts synergistically with Ap1 to activate CD11c. Further, both Sp1 sites are capable of cooperating with AP1. In vitro DNase I footprinting analysis with purified Sp1 and c-jun proteins showed that Sp1 binding could facilitate binding of c-jun. We propose that myeloid-specific expression of the CD11c promoter and is facilitated by cooperative interaction between the Sp1- and Ap1-binding sites.
白细胞整合素基因CD11c受转录调控,主要在骨髓单核细胞系的分化细胞上表达。在本研究中,我们证明了CD11c启动子的-72至-63区域和-132至-104区域含有负责佛波酯诱导髓系细胞系HL60分化的元件。DNase I足迹分析表明,这些区域可与纯化的Sp1结合,用Sp1抗体进行的超迁移分析证实,HL60核提取物中的Sp1可与这些区域结合。对含有这些Sp1结合位点缺失的CD11c启动子-氯霉素乙酰转移酶构建体进行转染分析表明,这些位点对于HL60细胞中CD11c基因的表达至关重要,但对T细胞系Molt4或宫颈癌细胞系HeLa则不然。此外,将pPacSp1与这些CD11c启动子-氯霉素乙酰转移酶构建体共转染到Sp1缺陷的果蝇Schneider 2细胞中,证实这些位点对于CD11c启动子的Sp1依赖性表达至关重要。体内基因组足迹分析表明,在佛波醇12-肉豆蔻酸酯13-乙酸酯分化的HL60细胞中,Sp1在-69至-63区域和-116至-105区域内与CD11c启动子接触,但在未分化的HL60细胞或Molt4或HeLa细胞中则不然。HL60细胞中的共转染试验表明,Sp1与Ap1协同作用以激活CD11c。此外,两个Sp1位点都能够与AP1协同作用。用纯化的Sp1和c-jun蛋白进行的体外DNase I足迹分析表明,Sp1结合可促进c-jun的结合。我们提出,CD11c启动子的髓系特异性表达是由Sp1结合位点和Ap1结合位点之间的协同相互作用促进的。