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核因子 κB 的 RelA 同源二聚体的 DNA 结合亲和力和转录活性不相关。

DNA-binding affinity and transcriptional activity of the RelA homodimer of nuclear factor κB are not correlated.

机构信息

From the Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093 and.

the Faculty of Health Sciences, University of Macau, Taipa, Macau SAR, China.

出版信息

J Biol Chem. 2017 Nov 17;292(46):18821-18830. doi: 10.1074/jbc.M117.813980. Epub 2017 Sep 21.

Abstract

The nuclear factor κB (NF-κB) transcription factor family regulates genes involved in cell proliferation and inflammation. The promoters of these genes often contain NF-κB-binding sites (κB sites) arranged in tandem. How NF-κB activates transcription through these multiple sites is incompletely understood. We report here an X-ray crystal structure of homodimers comprising the RelA DNA-binding domain containing the Rel homology region (RHR) in NF-κB bound to an E-selectin promoter fragment with tandem κB sites. This structure revealed that two dimers bind asymmetrically to the symmetrically arranged κB sites at which multiple cognate contacts between one dimer to the corresponding DNA are broken. Because simultaneous RelA-RHR dimer binding to tandem sites in solution was anti-cooperative, we inferred that asymmetric RelA-RHR binding with fewer contacts likely indicates a dissociative binding mode. We found that both κB sites are essential for reporter gene activation by full-length RelA homodimer, suggesting that dimers facilitate DNA binding to each other even though their stable co-occupation is not promoted. Promoter variants with altered spacing and orientation of tandem κB sites displayed unexpected reporter activities that were not explained by the solution-binding pattern of RelA-RHR. Remarkably, full-length RelA bound all DNAs with a weaker affinity and specificity. Moreover, the transactivation domain played a negative role in DNA binding. These observations suggest that other nuclear factors influence full-length RelA binding to DNA by neutralizing the transactivation domain negative effect. We propose that DNA binding by NF-κB dimers is highly complex and modulated by facilitated association-dissociation processes.

摘要

核因子 κB(NF-κB)转录因子家族调节参与细胞增殖和炎症的基因。这些基因的启动子通常包含串联排列的 NF-κB 结合位点(κB 位点)。NF-κB 如何通过这些多个位点激活转录尚不完全清楚。我们在这里报告了一个同型二聚体的 X 射线晶体结构,该二聚体由 NF-κB 中的 RelA DNA 结合域组成,包含 Rel 同源区(RHR),与具有串联 κB 位点的 E-选择素启动子片段结合。该结构显示,两个二聚体不对称地结合到对称排列的 κB 位点,其中一个二聚体与相应 DNA 之间的多个同源接触被打破。由于溶液中串联位点的同时 RelA-RHR 二聚体结合是反协同的,我们推断出具有较少接触的不对称 RelA-RHR 结合可能表明解离结合模式。我们发现,两个 κB 位点对于全长 RelA 同型二聚体激活报告基因都是必不可少的,这表明二聚体即使不促进其稳定共占据,也有助于彼此的 DNA 结合。具有改变的串联 κB 位点间距和取向的启动子变体显示出出人意料的报告基因活性,这无法用 RelA-RHR 的溶液结合模式来解释。值得注意的是,全长 RelA 与所有 DNA 的结合亲和力和特异性都较弱。此外,转录激活结构域在 DNA 结合中起负作用。这些观察结果表明,其他核因子通过中和转录激活结构域的负效应来影响全长 RelA 与 DNA 的结合。我们提出,NF-κB 二聚体的 DNA 结合非常复杂,并受促进的关联-解离过程的调节。

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