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A Model of Interdomain Mobility in a Multidomain Protein

机译:多域蛋白中域间迁移的模型

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摘要

Domain mobility plays an essential role in the biological function of multidomain systems. The characteristic times of domain motions fall into the interval from nano- to milliseconds, amenable to NMR studies. Proper analysis of NMR relaxation data for these systems in solution has to account for interdomain motions, in addition to the overall tumbling and local intradomain dynamics. Here we propose a model of interdomain mobility in a multidomain protein, which considers domain reorientations as exchange/ interconversion between two distinct conformational states of the molecule, combined with fully anisotropic overall tumbling. Analysis of ~(15)N-relaxation data for Lys48-linked diubiquitin at pH 4.5 and 6.8 showed that this model adequately fits the experimental data and allows characterization of both structural and motional properties of diubiquitin, thus providing information about the relative orientation of ubiquitin domains in both interconverting states. The analysis revealed that the two domains reorient on a time scale of 9-30 ns, with the amplitudes sufficient for allowing a protein ligand access to the binding sites sequestered at the interface in the closed conformation. The analysis of a possible mechanism controlling the equilibrium between the interconverting states in diubiquitin points toward protonation of His68, which results in three different charged states of the molecule, with zero, +e, and +2e net charge. Only two of the three states are noticeably populated at pH 4.5 or 6.8, which assures applicability of the two-state model to diubiquitin at these conditions. We also compare our model with the "extended model-free" approach and discuss possible future developments of the model.
机译:域移动性在多域系统的生物学功能中起着至关重要的作用。畴运动的特征时间落入了纳秒到毫秒的间隔,这适合NMR研究。对于这些系统在溶液中的NMR弛豫数据进行正确的分析,除了总体翻滚和局部域内动力学外,还必须考虑域间运动。在这里,我们提出了一种在多域蛋白中的域间迁移模型,该模型将域重新定向视为分子的两个不同构象状态之间的交换/互变,并结合了完全各向异性的整体翻转。在pH 4.5和6.8下对Lys48连接的双泛素的〜(15)N松弛数据的分析表明,该模型充分适合实验数据,并可以表征泛素的结构和运动性质,从而提供有关泛素相对取向的信息两种相互转换状态下的域。分析显示,两个结构域在9-30 ns的时间范围内重新定向,其幅度足以使蛋白质配体接近封闭构象中隔离在界面处的结合位点。控制双泛素中相互转换状态之间平衡的可能机制的分析指向His68的质子化,这导致分子的三个不同带电状态,净电荷为零,+ e和+ 2e。在pH 4.5或6.8下,这三个状态中只有两个显着填充,这确保了在这些条件下,两个状态模型对泛素的适用性。我们还将我们的模型与“扩展的无模型”方法进行比较,并讨论该模型的未来发展。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2007年第11期|p.3315-3327|共13页
  • 作者单位

    Department of Chemistry and Biochemistry, Center for Biomolecular Structure and Organization, University of Maryland, College Park, Maryland 20742;

  • 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
  • 中图分类 化学;
  • 关键词

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