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Single-molecule DNA unzipping reveals asymmetric modulation of a transcription factor by its binding site sequence and context

机译:单分子DNA解压缩显示通过其结合位点序列和上下文的转录因子的不对称调节

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摘要

Most functional transcription factor (TF) binding sites deviate from their 'consensus' recognition motif, although their sites and flanking sequences are often conserved across species. Here, we used single-molecule DNA unzipping with optical tweezers to study how Egr-1, a TF harboring three zinc fingers (ZF1, ZF2 and ZF3), is modulated by the sequence and context of its functional sites in the Lhb gene promoter. We find that both the core 9 bp bound to Egr-1 in each of the sites, and the base pairs flanking them, modulate the affinity and structure of the protein-DNA complex. The effect of the flanking sequences is asymmetric, with a stronger effect for the sequence flanking ZF3. Characterization of the dissociation time of Egr-1 revealed that a local, mechanical perturbation of the interactions of ZF3 destabilizes the complex more effectively than a perturbation of the ZF1 interactions. Our results reveal a novel role for ZF3 in the interaction of Egr-1 with other proteins and the DNA, providing insight on the regulation of Lhb and other genes by Egr-1. Moreover, our findings reveal the potential of small changes in DNA sequence to alter transcriptional regulation, and may shed light on the organization of regulatory elements at promoters.
机译:大多数功能转录因子(TF)结合位点偏离了他们的“共识”识别基序,尽管它们的位点和侧翼序列通常在物种中常被保守。在这里,我们使用具有光学镊子的单分子DNA解压缩,以研究EGR-1如何通过其在LHB基因启动子中的功能位点的序列和上下文调节TF含有三种锌指状物(ZF1,ZF2和ZF3)。我们发现,在每个位点中的核心9bp绑定到EGR-1,​​以及侧翼它们的碱基对,调节蛋白质DNA复合物的亲和力和结构。侧翼序列的效果是不对称的,对序列侧翼ZF3具有更强的效果。 EGR-1的解离时间的表征揭示了ZF3的相互作用的局部机械扰动更有效地比ZF1相互作用的扰动更有效地破坏了复合物。我们的结果揭示了ZF3在EGR-1与其他蛋白质和DNA的相互作用中的新作用,提供了对EGR-1调节LHB和其他基因的洞察力。此外,我们的研究结果揭示了DNA序列的小变化的潜力,以改变转录调节,并且可以在启动子的调控元素组织中脱荧光。

著录项

  • 来源
    《Nucleic Acids Research》 |2018年第3期|共12页
  • 作者单位

    Technion Israel Inst Technol Fac Biol IL-32000 Haifa Israel;

    Technion Israel Inst Technol Fac Biol IL-32000 Haifa Israel;

    Technion Israel Inst Technol Fac Biol IL-32000 Haifa Israel;

    Boston Univ Dept Biomed Engn Boston MA 02215 USA;

    Technion Israel Inst Technol Russell Berrie Nanotechnol Inst IL-32000 Haifa Israel;

    Technion Israel Inst Technol Fac Biol IL-32000 Haifa Israel;

    Technion Israel Inst Technol Fac Biol IL-32000 Haifa Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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