Hao D, Ohme-Takagi M, Sarai A
Tsukuba Life Science Center, The Institute of Physical and Chemical Research (RIKEN), 3-1-1 Koyadai, Tsukuba, Ibaraki 305-0074, Japan.
J Biol Chem. 1998 Oct 9;273(41):26857-61. doi: 10.1074/jbc.273.41.26857.
Ethylene-responsive element-binding proteins (EREBPs)have novel DNA-binding domains (ERF domains), which are widely conserved in plants, and interact specifically with sequences containing AGCCGCC motifs (GCC box). Deletion experiments show that some flanking region at the N terminus of the conserved 59-amino acid ERF domain is required for stable binding to the GCC box. Three ERF domain-containing fragments of EREBP2, EREBP4, and AtERF1 from tobacco and Arabidopsis, bind to the sequence containing the GCC box with a high binding affinity in the pM range. The high affinity binding is conferred by a monomeric ERF domain fragment, and DNA truncation experiments show that only 11-base pair DNA containing the GCC box is sufficient for stable ERF domain interaction. Systematic DNA mutation analyses demonstrate that the specific amino acid contacts are confined within the 6-base pair GCCGCC region of the GCC box, and the first G, the fourth G, and the sixth C exhibit highest binding specificity common in all three ERF domain-containing fragments studied. Other bases within the GCC box exhibit modulated binding specificity varying from protein to protein, implying that these positions are important for differential binding by different EREBPs. The conserved N-terminal half is likely responsible for formation of a stable complex with the GCC box and the divergent C-terminal half for modulating the specificity.
乙烯响应元件结合蛋白(EREBPs)具有新型DNA结合结构域(ERF结构域),该结构域在植物中广泛保守,并与含有AGCCGCC基序(GCC盒)的序列特异性相互作用。缺失实验表明,保守的59个氨基酸的ERF结构域N端的一些侧翼区域对于与GCC盒的稳定结合是必需的。来自烟草和拟南芥的EREB2、EREB4和AtERF1的三个含ERF结构域的片段,以皮摩尔范围内的高结合亲和力与含有GCC盒的序列结合。高亲和力结合由单体ERF结构域片段赋予,DNA截短实验表明,仅含有GCC盒的11个碱基对的DNA就足以实现ERF结构域的稳定相互作用。系统性DNA突变分析表明,特定的氨基酸接触局限于GCC盒的6个碱基对的GCCGCC区域内,并且第一个G、第四个G和第六个C在所有研究的三个含ERF结构域的片段中表现出最高的结合特异性。GCC盒内的其他碱基表现出因蛋白质而异的调节结合特异性,这意味着这些位置对于不同EREBPs的差异结合很重要。保守的N端一半可能负责与GCC盒形成稳定的复合物,而不同的C端一半则用于调节特异性。