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The phage T4 MotA transcription factor contains a novel DNA binding motif that specifically recognizes modified DNA

机译:噬菌体T4 Mota转录因子含有一种新型DNA结合基质,其特异性识别改性DNA

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摘要

During infection, bacteriophage T4 produces the MotA transcription factor that redirects the host RNA polymerase to the expression of T4 middle genes. The C-terminal 'double-wing' domain of MotA binds specifically to the MotA box motif of middle T4 promoters. We report the crystal structure of this complex, which reveals a new mode of protein-DNA interaction. The domain binds DNA mostly via interactions with the DNA backbone, but the binding is enhanced in the specific cognate structure by additional interactions with the MotA box motif in both the major and minor grooves. The linker connecting the two MotA domains plays a key role in stabilizing the complex via minor groove interactions. The structure is consistent with our previous model derived from chemical cleavage experiments using the entire transcription complex. alpha- and beta-D-glucosyl-5-hydroxymethyl-deoxycytosine replace cytosine in T4 DNA, and docking simulations indicate that a cavity in the cognate structure can accommodate the modified cytosine. Binding studies confirm that the modification significantly enhances the binding affinity of MotA for the DNA. Consequently, our work reveals how a DNA modification can extend the uniqueness of small DNA motifs to facilitate the specificity of protein-DNA interactions.
机译:在感染期间,噬菌体T4产生MOTA转录因子,其将宿主RNA聚合酶重定向到T4中基的表达。 Mota的C终端'双翼'域特定于中间T4启动子的Mota Box基序。我们报告了该综合体的晶体结构,揭示了一种新的蛋白质-DNA相互作用模式。该结构域主要通过与DNA主链的相互作用结合DNA,但是通过在主要和次要凹槽中通过与Mota Box基序的附加相互作用进行附加相互作用,在特定的同源结构中增强结合。连接两个Mota域的连接器在通过较小的凹槽相互作用稳定复合物中起着关键作用。该结构与使用整个转录复合物的化学切割实验衍生的先前模型一致。 α-和β-D-葡萄糖基-5-羟甲基 - 脱氧胞嘧啶替代T4 DNA中的胞嘧啶,并且对接模拟表明同源结构中的腔可以容纳改性胞嘧啶。结合研究证实,该改性显着增强了Mota对DNA的结合亲和力。因此,我们的工作揭示了DNA修饰如何延长小型DNA基序的唯一性以促进蛋白质-DNA相互作用的特异性。

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  • 来源
    《Nucleic Acids Research》 |2018年第10期|共11页
  • 作者单位

    St Jude Childrens Res Hosp Dept Struct Biol 332 N Lauderdale St Memphis TN 38105 USA;

    St Jude Childrens Res Hosp Dept Struct Biol 332 N Lauderdale St Memphis TN 38105 USA;

    NIDDK Gene Express &

    Regulat Sect Lab Cell &

    Mol Biol NIH Bethesda MD 20892 USA;

    St Jude Childrens Res Hosp Dept Struct Biol 332 N Lauderdale St Memphis TN 38105 USA;

    NIDDK Gene Express &

    Regulat Sect Lab Cell &

    Mol Biol NIH Bethesda MD 20892 USA;

    NIDDK Gene Express &

    Regulat Sect Lab Cell &

    Mol Biol NIH Bethesda MD 20892 USA;

    St Jude Childrens Res Hosp Dept Struct Biol 332 N Lauderdale St Memphis TN 38105 USA;

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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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