Swanson H I, Yang J H
Department of Pharmacology, University of Kentucky, Lexington, KY 40536, USA.
Nucleic Acids Res. 1999 Aug 1;27(15):3205-12. doi: 10.1093/nar/27.15.3205.
Basic helix-loop-helix proteins that interact with the DNA recognition site CACGTG include the c-Myc/Max heterodimer and the ARNT (Ahreceptornucleartranslocator) homodimer. We have utilized a PCR-based protocol to identify high affinity binding sites of either the c-Myc/Max or ARNT/ARNT dimers and analyzed the ability of these dimers to interact with their derived consensus sequences and activate genes. chi(2)analysis of the selected DNA recognition sites revealed that DNA binding of the ARNT homodimer is symmetric, resulting in the consensus sequence RTCACGTGAY. Gel shift analysis demonstrated that the flanking nucleotides play an important role in dictating DNA binding affinity of the ARNT homodimer. These flanking sequences also regulate the ability of ARNT to competitively displace the c-Myc/Max heterodimer from a CACGTG-containing sequence. However, transient transfection analyses in CV-1 cells revealed that ARNT and c-Myc/Max exhibited similar abilities to activate transcription through each other's consensus sequences. Taken together, these results indicate that although binding affinity of these dimers for the CACGTG core sequences may be differentially influenced by flanking nucleotides, transcriptional activity may also be determined by other factors, such as cellular concentrations of these proteins and their co-activators.
与DNA识别位点CACGTG相互作用的碱性螺旋-环-螺旋蛋白包括c-Myc/Max异二聚体和ARNT(芳烃受体核转运蛋白)同二聚体。我们利用基于PCR的方案来鉴定c-Myc/Max或ARNT/ARNT二聚体的高亲和力结合位点,并分析这些二聚体与它们推导的共有序列相互作用并激活基因的能力。对所选DNA识别位点的卡方分析表明,ARNT同二聚体的DNA结合是对称的,产生共有序列RTCACGTGAY。凝胶迁移分析表明,侧翼核苷酸在决定ARNT同二聚体的DNA结合亲和力方面起着重要作用。这些侧翼序列还调节ARNT从含CACGTG的序列中竞争性取代c-Myc/Max异二聚体的能力。然而,在CV-1细胞中的瞬时转染分析表明,ARNT和c-Myc/Max通过彼此的共有序列激活转录的能力相似。综上所述,这些结果表明,尽管这些二聚体对CACGTG核心序列的结合亲和力可能受到侧翼核苷酸的不同影响,但转录活性也可能由其他因素决定,如这些蛋白质及其共激活因子的细胞浓度。