Kikuchi Yasuo, Ohsawa Shizue, Mimura Junsei, Ema Masatsugu, Takasaki Chikahisa, Sogawa Kazuhiro, Fujii-Kuriyama Yoshiaki
Department of Biomolecular Sciences, Graduate School of Life Science, Tohoku University, Sendai 980-8578.
J Biochem. 2003 Jul;134(1):83-90. doi: 10.1093/jb/mvg115.
AhR (aryl hydrocarbon receptor), AhRR (AhR repressor), and Arnt (AhR nuclear translocator) are members of the bHLH (basic-helix-loop-helix)-PAS (Per-AhR/Arnt-Sim homology sequence) transcription factor superfamily. They associate with each other to form heterodimers, AhR/Arnt or AhRR/Arnt, and bind the XRE (xenobiotic responsive element) sequences in the promoter regions of the target genes to regulate their expression. Their basic regions and HLH motifs mediate DNA binding activity and protein dimerization, respectively. The PAS domain includes two incomplete repeats, PAS-A and PAS-B, and is considered to determine the specificity on protein dimerization. However, the three-dimensional structures of PAS folds reported so far are all monomeric, therefore, little is known about the structural basis of protein interaction through PAS domains. In the present study, we prepared heterodimeric bHLH-PAS domains derived from AhR and Arnt, and AhRR and Arnt by co-expressing each pair in E. coli, and showed that the heterodimers formed exhibited full DNA-binding activity, which was not apparently affected by deletion of the highly basic amino acid cluster most N-terminal as to the HLH region of AhR or AhRR. Methylation of the two CpG sites in the XRE core sequence reduced the binding affinity to heterodimeric proteins, with 5-methylcytosine in the AhR recognition site exhibiting a greater inhibitory effect than that in the Arnt recognition site.
芳烃受体(AhR)、AhR 阻遏蛋白(AhRR)和芳烃受体核转运蛋白(Arnt)是碱性螺旋-环-螺旋(bHLH)-PAS(Per-AhR/Arnt-Sim 同源序列)转录因子超家族的成员。它们相互结合形成异二聚体,即 AhR/Arnt 或 AhRR/Arnt,并与靶基因启动子区域中的外源性反应元件(XRE)序列结合以调节其表达。它们的碱性区域和 HLH 基序分别介导 DNA 结合活性和蛋白质二聚化。PAS 结构域包括两个不完整的重复序列,PAS-A 和 PAS-B,被认为决定了蛋白质二聚化的特异性。然而,迄今为止报道的 PAS 折叠的三维结构均为单体,因此,关于通过 PAS 结构域进行蛋白质相互作用的结构基础知之甚少。在本研究中,我们通过在大肠杆菌中共表达每一对蛋白,制备了源自 AhR 和 Arnt 以及 AhRR 和 Arnt 的异二聚体 bHLH-PAS 结构域,并表明形成的异二聚体具有完全的 DNA 结合活性,该活性显然不受 AhR 或 AhRR 的 HLH 区域最 N 端高度碱性氨基酸簇缺失影响。XRE 核心序列中两个 CpG 位点的甲基化降低了对异二聚体蛋白的结合亲和力,AhR 识别位点中的 5-甲基胞嘧啶比 Arnt 识别位点中的表现出更大的抑制作用。