首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Deciphering the Combinatorial DNA-binding Code of the CCAAT-binding Complex and the Iron-regulatory Basic Region Leucine Zipper (bZIP) Transcription Factor HapX
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Deciphering the Combinatorial DNA-binding Code of the CCAAT-binding Complex and the Iron-regulatory Basic Region Leucine Zipper (bZIP) Transcription Factor HapX

机译:解密CCAAT结合复合物和铁调节基本区域亮氨酸拉链(bZIP)转录因子HapX的组合DNA结合密码。

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摘要

The heterotrimeric CCAAT-binding complex (CBC) is evolutionarily conserved in eukaryotic organisms, including fungi, plants, and mammals. The CBC consists of three subunits, which are named in the filamentous fungus Aspergillus nidulans HapB, HapC, and HapE. HapX, a fourth CBC subunit, was identified exclusively in fungi, except for Saccharomyces cerevisiae and the closely related Saccharomycotina species. The CBC-HapX complex acts as the master regulator of iron homeostasis. HapX belongs to the class of basic region leucine zipper transcription factors. We demonstrated that the CBC and HapX bind cooperatively to bipartite DNA motifs with a general HapX/CBC/DNA 2:1:1 stoichiometry in a class of genes that are repressed by HapX-CBC in A. nidulans during iron limitation. This combinatorial binding mode requires protein-protein interaction between the N-terminal domain of HapE and the N-terminal CBC binding domain of HapX as well as sequence-specific DNA binding of both the CBC and HapX. Initial binding of the CBC to CCAAT boxes is mandatory for DNA recognition of HapX. HapX specifically targets the minimal motif 5′-GAT-3′, which is located at a distance of 11–12 bp downstream of the respective CCAAT box. Single nucleotide substitutions at the 5′- and 3′-end of the GAT motif as well as different spacing between the CBC and HapX DNA-binding sites revealed a remarkable promiscuous DNA-recognition mode of HapX. This flexible DNA-binding code may have evolved as a mechanism for fine-tuning the transcriptional activity of CBC-HapX at distinct target promoters.
机译:异源三聚体CCAAT结合复合物(CBC)在真核生物(包括真菌,植物和哺乳动物)中是进化保守的。 CBC由三个亚基组成,在丝状真菌构巢曲霉HapB,HapC和HapE中被命名。 HapX是CBC的第四个亚基,仅在真菌中鉴定,除了酿酒酵母和密切相关的酿酒酵母菌种。 CBC-HapX复合物充当铁稳态的主要调节剂。 HapX属于基本区域亮氨酸拉链转录因子。我们证明了CBC和HapX与普通的HapX / CBC / DNA 2:1:1化学计量的二分体DNA基序协同结合,在铁限制期间在构巢曲霉中被HapX-CBC抑制的一类基因中。这种组合结合模式需要HapE的N末端结构域与HapX的N末端CBC结合结构域之间的蛋白质-蛋白质相互作用,以及CBC和HapX的序列特异性DNA结合。 CBC与CCAAT盒的初始结合对于HapX的DNA识别是必需的。 HapX专门针对最小基序5'-GAT-3',该基序位于相应CCAAT盒下游11–12 bp处。 GAT基序的5'-和3'-末端的单核苷酸取代以及CBC和HapX DNA结合位点之间的不同间距揭示了HapX具有明显的混杂DNA识别模式。这种灵活的DNA结合密码可能已经发展成为一种微调CBC-HapX在不同目标启动子处的转录活性的机制。

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