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Redesign of High-Affinity Nonspecific Nucleases with Altered Sequence Preference

机译:重新设计具有改变的序列偏好的高亲和力非特异性核酸酶

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摘要

It is of crucial importance to elucidate the underlying principles that govern the binding affinity and selectivity between proteins and DNA. Here we use the nuclease domain of Colicin E7 (nColE7) as a model system to generate redesigned nucleases with improved DNA-binding affinities. ColE7 is a bacterial toxin, bearing a nonspecific endonuclease domain with a preference for hydrolyzing DNA phosphodiester bonds at the 3'0-side after thymine and adenine; i.e., it prefers Thy and Ade at the -1 site. Using systematic computational screening, six nColE7 mutants were predicted to bind DNA with high affinity. Five of the redesigned single-point mutants were constructed and purified, and four mutants had a 3- to 5-fold higher DNA binding affinitythan wild-type nColE7 as measured by fluorescence kinetic assays. Moreover, three of the designed mutants, D493N, D493Q, and D493R, digested DNA with an increased preference for guanine at +3 sites compared to the wild-type enzyme, as shown by DNA footprint assays. X-ray structure determination of the ColE7 mutant D493Q-DNA complex in conjunction with structural and free energy decomposition analyses provides a physical basis for the improved protein-DNA interactions: Replacing D493 at the protein-DNA interface with an amino acid residue that can maintain the native hydrogen bonds removes the unfavorable electrostatic repulsion between the negatively charged carboxylate and DNA phosphate groups. These results show that computational screening combined with biochemical, structural, and free energy analyses provide a useful means for generating redesigned nucleases with a higher DNA-binding affinity and altered sequence preferences in DNA cleavage.
机译:阐明控制蛋白质与DNA之间的结合亲和力和选择性的基本原理至关重要。在这里,我们使用Colicin E7(nColE7)的核酸酶结构域作为模型系统,以生成具有改进的DNA结合亲和力的重新设计的核酸酶。 ColE7是一种细菌毒素,带有一个非特异性核酸内切酶结构域,在胸腺嘧啶和腺嘌呤后的3'0端优先水解DNA磷酸二酯键。也就是说,它在-1网站上更喜欢Thy和Ade。使用系统的计算机筛选,预计六个nColE7突变体将以高亲和力结合DNA。重建并纯化了五个重新设计的单点突变体,并且通过荧光动力学分析测量,四个突变体的DNA结合亲和力比野生型nColE7高3至5倍。而且,设计的三个突变体D493N,D493Q和D493R消化的DNA与野生型酶相比,在+3位点对鸟嘌呤的偏好增加,如DNA足迹分析所示。对ColE7突变体D493Q-DNA复合体的X射线结构测定,以及结构和自由能分解分析,为改善的蛋白质-DNA相互作用提供了物理基础:用可以维持氨基酸残基的方式取代蛋白质-DNA界面上的D493。天然氢键消除了带负电荷的羧酸根和DNA磷酸根之间不利的静电排斥。这些结果表明,计算筛选与生化,结构和自由能分析相结合,为生成具有更高的DNA结合亲和力和改变的DNA切割优先顺序的核酸酶提供了一种有用的手段。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2009年第47期|17345-17353|共9页
  • 作者单位

    Institute of Molecular Biology, Institute of Biomedical Sciences, and Institute of Chemical Biology and Molecular Biophysics, Academia Sinica, Taipei, Taiwan, R.O.C Taiwan International Graduate Program, Academia Sinica, Taipei, Taiwan, R.O.C Institute of Bioinformatics and Structural Biology and Department of Chemistry, National Tsing Hua University, HsinChu, Taiwan, R.O.C;

    Institute of Biochemistry and Molecular Biology, Taipei, Taiwan, R.O.C;

    Institute of Molecular Biology, Institute of Biomedical Sciences, and Institute of Chemical Biology and Molecular Biophysics, Academia Sinica, Taipei, Taiwan, R.O.C;

    Institute of Molecular Biology, Institute of Biomedical Sciences, and Institute of Chemical Biology and Molecular Biophysics, Academia Sinica, Taipei, Taiwan, R.O.C;

    Institute of Biochemistry and Molecular Biology, Taipei, Taiwan, R.O.C Taiwan International Graduate Program, Academia Sinica, Taipei, Taiwan, R.O.C Institute of Bioinformatics and Structural Biology and Department of Chemistry, National Tsing Hua University, HsinChu, Taiwan, R.O.C;

    Institute of Molecular Biology, Institute of Biomedical Sciences, and Institute of Chemical Biology and Molecular Biophysics, Academia Sinica, Taipei, Taiwan, R.O.C Taiwan International Graduate Program, Academia Sinica, Taipei, Taiwan, R.O.C National Taiwan University, Taipei, Taiwan, R.O.C;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:30

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