Department of Biology, Boston University, Boston, MA 02215, USA.
School of Education, Boston University, Boston, MA 02215, USA.
Nucleic Acids Res. 2018 Mar 16;46(5):2509-2520. doi: 10.1093/nar/gky002.
Transcription factors IRF3, IRF5 and IRF7 (IRF3/5/7) have overlapping, yet distinct, roles in the mammalian response to pathogens. To examine the role that DNA-binding specificity plays in delineating IRF3/5/7-specific gene regulation we used protein-binding microarrays (PBMs) to characterize the DNA binding of IRF3/5/7 homodimers. We identified both common and dimer-specific DNA binding sites, and show that DNA-binding differences can translate into dimer-specific gene regulation. Central to the antiviral response, IRF3/5/7 regulate type I interferon (IFN) genes. We show that IRF3 and IRF7 bind to many interferon-stimulated response element (ISRE)-type sites in the virus-response elements (VREs) of IFN promoters. However, strikingly, IRF5 does not bind the VREs, suggesting evolutionary selection against IRF5 homodimer binding. Mutational analysis reveals a critical specificity-determining residue that inhibits IRF5 binding to the ISRE-variants present in the IFN gene promoters. Integrating PBM and reporter gene data we find that both DNA-binding affinity and affinity-independent mechanisms determine the function of DNA-bound IRF dimers, suggesting that DNA-based allostery plays a role in IRF binding site function. Our results provide new insights into the role and limitations of DNA-binding affinity in delineating IRF3/5/7-specific gene expression.
转录因子 IRF3、IRF5 和 IRF7(IRF3/5/7)在哺乳动物对病原体的反应中具有重叠但又不同的作用。为了研究 DNA 结合特异性在划定 IRF3/5/7 特异性基因调控中的作用,我们使用蛋白质结合微阵列(PBM)来表征 IRF3/5/7 同源二聚体的 DNA 结合。我们确定了常见和二聚体特异性的 DNA 结合位点,并表明 DNA 结合差异可以转化为二聚体特异性的基因调控。IRF3/5/7 是抗病毒反应的核心,调节 I 型干扰素(IFN)基因。我们表明,IRF3 和 IRF7 结合到 IFN 启动子的病毒反应元件(VRE)中的许多干扰素刺激反应元件(ISRE)型位点。然而,令人惊讶的是,IRF5 不结合 VRE,表明进化选择了 IRF5 同源二聚体结合。突变分析揭示了一个关键的特异性决定残基,该残基抑制了 IRF5 结合到 IFN 基因启动子中存在的 ISRE 变体。整合 PBM 和报告基因数据,我们发现 DNA 结合亲和力和亲和力独立机制都决定了 DNA 结合的 IRF 二聚体的功能,这表明 DNA 基别构在 IRF 结合位点功能中起作用。我们的研究结果为 DNA 结合亲和力在划定 IRF3/5/7 特异性基因表达中的作用和局限性提供了新的见解。