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Lysine Side-Chain Dynamics in the Binding Site of Homeodomain/DNA Complexes As Observed by NMR Relaxation Experiments and Molecular Dynamics Simulations

机译:由NMR弛豫实验和分子动力学模拟观察到的同源域/ DNA复合物的结合位点中的赖氨酸侧链动力学

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摘要

An important but poorly characterized contribution to the thermodynamics of protein–DNA interactions is the loss of entropy that occurs from restricting the conformational freedom of amino acid side chains. The effect of restricting the flexibility of several side chains at a protein–DNA interface may be comparable in many cases to the other factors that determine the binding thermodynamics and may, therefore, play a key role in dictating the binding affinity and/or specificity. Because the entropic contributions, including the presence and influence of side-chain dynamics, are especially difficult to estimate based on structural information, it is important to pursue experimental and theoretical studies that can provide direct information regarding these issues. We report on studies of a model system, the homeodomain/DNA complex, focusing on the Lys50 class of homeodomains where a key lysine residue in position 50 was shown previously to be critical for binding site specificity. NMR methodology was employed for determining the dynamics of lysine side-chain amino groups via ~(15)N relaxation measurements in the Lys50-class homeodomains from the Drosophila protein Bicoid and the human protein Pitx2. In the case of Pitx2, complexes with both a consensus and a nonconsensus DNA binding site were examined. NMR-derived order parameters indicated moderate to substantial conformational freedom for the lysine NH_(3)~(+) group in the complexes studied. To complement the experimental NMR measurements, molecular dynamics simulations were performed for the consensus complexes to gain further, detailed insights regarding the dynamics of the Lys50 side chain and other important residues in the protein–DNA interface.
机译:对蛋白质-DNA相互作用的热力学的重要贡献是熵的损失,这些熵发生限制氨基酸侧链的构象自由度。限制蛋白质-DNA界面在蛋白质-DNA界面处的柔韧性的效果可以在许多情况下与确定结合热力学的其他因素相当,因此可以在决定结合亲和力和/或特异性方面发挥关键作用。由于熵贡献,包括侧链动力学的存在和影响,特别难以基于结构信息估计,重要的是要追求可以提供关于这些问题的直接信息的实验和理论研究。我们报告了模型系统的研究,同源域/ DNA复合物,聚焦在Hysodomains的Lys50类别中,其中先前显示了适当的位置50的键赖氨酸残基对结合位点特异性至关重要。使用NMR方法,用于测定赖氨酸侧链氨基的动态通过〜(15)μs释放测量从果蝇蛋白双蛋白和人蛋白质pitx2中的Lys50级型果糖中的弛豫测量测量。在PITX2的情况下,检查具有共有共有和非损伤DNA结合位点的复合物。 NMR衍生的订单参数指示所研究的络合物中赖氨酸NH_(3)〜(+)组的适度至大幅构象自由度。为了补充实验性NMR测量,对蛋白质-DNA界面中的Lys50侧链和其他重要残基进行进一步,对蛋白质-DNA界面中的其他重要残基进行进一步进行分子动力学模拟。

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  • 来源
    《Biochemistry》 |2018年第19期|共18页
  • 作者单位

    Department of Chemistry and Physical Sciences Mount St. Joseph University Cincinnati Ohio 45233 United States;

    Department of Physics University of Cincinnati Cincinnati Ohio 45220 United States;

    Department of Molecular Genetics Biochemistry and Microbiology University of Cincinnati College of Medicine Cincinnati Ohio 45267 United States;

    Department of Molecular Genetics Biochemistry and Microbiology University of Cincinnati College of Medicine Cincinnati Ohio 45267 United States;

    Department of Molecular Genetics Biochemistry and Microbiology University of Cincinnati College of Medicine Cincinnati Ohio 45267 United States;

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  • 正文语种 eng
  • 中图分类 生物化学;
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