Verger A, Buisine E, Carrère S, Wintjens R, Flourens A, Coll J, Stéhelin D, Duterque-Coquillaud M
CNRS Unité Mixte de Recherche 8526, Institut de Biologie de Lille, B.P. 447, 1 rue Calmette, 59021 Lille Cedex, France.
J Biol Chem. 2001 May 18;276(20):17181-9. doi: 10.1074/jbc.M010208200. Epub 2001 Feb 23.
Jun, Fos, and Ets proteins belong to distinct families of transcription factors that target specific DNA elements often found jointly in gene promoters. Physical and functional interactions between these families play important roles in modulating gene expression. Previous studies have demonstrated a direct interaction between the DNA-binding domains of the two partners. However, the molecular details of the interactions have not been investigated so far. Here we used the known three-dimensional structures of the ETS DNA-binding domain and Jun/Fos heterodimer to model an ETS-Jun/Fos-DNA ternary complex. Docking procedures suggested that certain ETS domain residues in the DNA recognition helix alpha3 interact with the N-terminal basic domain of Jun. To support the model, different Erg ETS domain mutants were obtained by deletion or by single amino acid substitutions and were tested for their ability to mediate DNA binding, Erg-Jun/Fos complex formation, and transcriptional activation. We identified point mutations that affect both the DNA binding properties of Erg and its physical interaction with Jun (R367K), as well as mutations that essentially prevent transcriptional synergy with the Jun/Fos heterodimer (Y371V). These results provide a framework of the ETS/bZIP interaction linked to the manifestation of functional activity in gene regulation.
Jun、Fos和Ets蛋白属于不同的转录因子家族,它们靶向基因启动子中常见的特定DNA元件。这些家族之间的物理和功能相互作用在调节基因表达中起着重要作用。先前的研究已经证明了两个伙伴的DNA结合结构域之间存在直接相互作用。然而,到目前为止,尚未对这些相互作用的分子细节进行研究。在这里,我们利用Ets DNA结合结构域和Jun/Fos异二聚体的已知三维结构来模拟Ets-Jun/Fos-DNA三元复合物。对接程序表明,DNA识别螺旋α3中的某些Ets结构域残基与Jun的N端碱性结构域相互作用。为了支持该模型,通过缺失或单个氨基酸取代获得了不同的Erg Ets结构域突变体,并测试了它们介导DNA结合、Erg-Jun/Fos复合物形成和转录激活的能力。我们鉴定出了影响Erg的DNA结合特性及其与Jun的物理相互作用的点突变(R367K),以及基本上阻止与Jun/Fos异二聚体转录协同作用的突变(Y371V)。这些结果提供了一个与基因调控中功能活性表现相关的Ets/bZIP相互作用框架。