Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.
J Biol Chem. 2012 Sep 14;287(38):31833-44. doi: 10.1074/jbc.M112.374462. Epub 2012 Jul 27.
ATF2-Jun, IRF3, and HMGI recognize a composite regulatory element within the interferon-β enhancer (IFNb). Cooperative ATF2-Jun-IRF3 complex formation at IFNb has been proposed to require a fixed orientation of ATF2-Jun binding. Our results show that ATF2-Jun heterodimers bound IFNb in both orientations alone and in association with IRF3 and HMGI. Two sets of symmetrically located amino acid residues in ATF2 and Jun facilitated the interactions between heterodimers bound in opposite orientations and IRF3 at IFNb. IRF3 and HMGI bound IFNb in association with both orientations of ATF2-Jun heterodimers with the same cooperativity. ATF2-Jun heterodimers that bound IFNb in opposite orientations in vitro had different effects on interferon-β gene transcription when they were co-expressed with IRF3 in cultured cells. These heterodimers had different transcriptional activities at different endogenous genes. Different regions of ATF2 and Jun mediated their orientation-dependent transcriptional activities at different genes. These studies revealed that cooperative DNA binding does not require a unique nucleoprotein complex configuration, and that transcription factor complexes that bind the same enhancer in different configurations can have different transcriptional activities.
ATF2-Jun、IRF3 和 HMGI 识别干扰素-β增强子(IFNb)中的一个复合调节元件。已经提出,IFNb 上的 ATF2-Jun-IRF3 合作复合物的形成需要 ATF2-Jun 结合的固定取向。我们的结果表明,ATF2-Jun 异二聚体单独结合 IFNb 的两种取向,以及与 IRF3 和 HMGI 结合。ATF2 和 Jun 中两组对称定位的氨基酸残基促进了结合在相反取向的异二聚体之间以及 IFNb 上的 IRF3 之间的相互作用。IRF3 和 HMGI 与 ATF2-Jun 异二聚体的两种取向结合,具有相同的协同作用。在体外结合 IFNb 的相反取向的 ATF2-Jun 异二聚体在与 IRF3 共表达于培养细胞中时,对干扰素-β基因转录具有不同的影响。这些异二聚体在不同的内源性基因上具有不同的转录活性。ATF2 和 Jun 的不同区域在不同的基因上介导其取向依赖性转录活性。这些研究表明,协同 DNA 结合不需要独特的核蛋白复合物构象,并且结合不同构象的相同增强子的转录因子复合物可以具有不同的转录活性。