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首页> 外文期刊>Journal of the American Chemical Society >Ensemble Approach for NMR Structure Refinement against ~1H Paramagnetic Relaxation Enhancement Data Arising from a Flexible Paramagnetic Group Attached to a Macromolecule
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Ensemble Approach for NMR Structure Refinement against ~1H Paramagnetic Relaxation Enhancement Data Arising from a Flexible Paramagnetic Group Attached to a Macromolecule

机译:针对〜1H顺磁性弛豫增强数据的NMR结构细化的集成方法,该数据来自与高分子连接的柔性顺磁性基团

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摘要

Paramagnetic relaxation enhancement (PRE) measurements on ~1H nuclei have the potential to play an important role in NMR structure determination of macromolecules by providing unique long-range (10-35 A) distance information. Recent methodological advances for covalently attaching paramagnetic groups at specific sites on both proteins and nucleic acids have permitted the application of the PRE to various biological macromolecules. However, because artificially introduced paramagnetic groups are exposed to solvent and linked to the macromolecule by several freely rotatable bonds, they are intrinsically flexible. This renders conventional back-calculation of the ~1H-PRE using a single-point representation inaccurate, thereby severely limiting the utility of the ~1H-PRE as a tool for structure refinement. To circumvent these limitations, we have developed a theoretical framework and computational strategy with which to accurately back-calculate ~1H-PREs arising from flexible paramagnetic groups attached to macromolecules. In this scheme, the ~1H-PRE is calculated using a modified Solomon-Bloembergen equation incorporating a "model-free" formalism, based on a multiple-structure representation of the paramagnetic group in simulated annealing calculations. The ensemble approach for 1H-PRE back-calculation was examined using several SRY/DNA complexes incorporating dT-EDTA-Mn~(2+) at three distinct sites in the DNA, permitting a large data set comprising 435 experimental backbone and side-chain ~1H-PREs to be obtained in a straightforward manner from 2D through-bond correlation experiments. Calculations employing complete cross-validation demonstrate that the ensemble representation provides a means to accurately utilize backbone and side-chain 1H-PRE data arising from a flexible paramagnetic group in structure refinement. The results of ~1H-PRE based refinement, in conjunction with previously obtained NMR restraints, indicate that significant gains in accuracy can be readily obtained. This is particularly significant in the case of macromolecular complexes where intermolecular translational restraints derived from nuclear Overhauser enhancement data may be limited.
机译:通过提供独特的远距离(10-35 A)距离信息,〜1H核上的顺磁弛豫增强(PRE)测量可能在大分子的NMR结构确定中发挥重要作用。在蛋白质和核酸的特定位点共价连接顺磁性基团的最新方法学进展已允许将PRE用于各种生物大分子。但是,由于人工引入的顺磁性基团暴露于溶剂并通过几个可自由旋转的键与大分子连接,因此它们本质上是柔性的。这使得使用单点表示法对〜1H-PRE进行常规反向计算不准确,从而严重限制了〜1H-PRE作为结构优化工具的实用性。为了避免这些局限性,我们开发了一种理论框架和计算策略,利用该框架和计算策略可以准确地反算由附着于大分子的柔性顺磁性基团产生的〜1H-PRE。在此方案中,〜1H-PRE是基于模拟退火计算中顺磁性基团的多结构表示,使用合并了“无模型”形式的改良Solomon-Bloembergen方程来计算的。使用几种SRY / DNA复合物在DNA的三个不同位点掺入dT-EDTA-Mn〜(2+)来检查1H-PRE反算的整体方法,从而获得包含435个实验骨架和侧链的大数据集〜1H-PREs可通过二维直键相关实验以直接方式获得。使用完全交叉验证的计算表明,整体表示提供了一种方法,可以在结构优化中准确地利用由柔性顺磁性基团产生的主链和侧链1H-PRE数据。基于〜1H-PRE的改进结果以及先前获得的NMR约束表明,可以很容易地获得准确度的显着提高。这在大分子复合物的情况下尤其重要,在这种情况下,可能会限制源自核Overhauser增强数据的分子间翻译限制。

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  • 来源
    《Journal of the American Chemical Society》 |2004年第18期|p. 5879-5896|共18页
  • 作者单位

    Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Disease, National Institutes of Health, Bethesda, Maryland 20892-0520;

    Division of Computational Bioscience, Center for Information Technology, National Institutes of Health, Bethesda, Maryland 20892-5624;

    Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Disease, National Institutes of Health, Bethesda, Maryland 20892-0520;

  • 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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