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Structure and backbone dynamics of a microcrystalline metalloprotein by solid-state NMR

机译:固态NMR分析微晶金属蛋白的结构和主链动力学

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摘要

We introduce a new approach to improve structural and dynamical determination of large metalloproteins using solid-state nuclear magnetic resonance (NMR) with ~1H detection under ultrafast magic angle spinning (MAS). The approach is based on the rapid and sensitive acquisition of an extensive set of ~(15)N and ~(13)C nuclear relaxation rates. The system on which we demonstrate these methods is the enzyme Cu, Zn superoxide dismutase (SOD), which coordinates a Cu ion available either in Cu~+ (diamagnetic) or Cu~2 (paramagnetic) form. Paramagnetic relaxation enhancements are obtained from the difference in rates measured in the two forms and are employed as structural constraints for the determination of the protein structure. When added to ~1H-~1 H distance restraints, they are shown to yield a twofold improvement of the precision of the structure. Site-specific order parameters and timescales of motion are obtained by a Gaussian axial fluctuation (GAF) analysis of the relaxation rates of the diamagnetic molecule, and interpreted in relation to backbone structure and metal binding. Timescales for motion are found to be in the range of the overall correlation time in solution, where internal motions characterized here would not be observable.
机译:我们介绍了一种新方法,可利用固态核磁共振(NMR)和超快幻角旋转(MAS)下的〜1H检测来改善大型金属蛋白的结构和动力学测定。该方法基于快速,灵敏地获得〜(15)N和〜(13)C广泛的核弛豫速率。我们证明这些方法的系统是酶Cu,Zn超氧化物歧化酶(SOD),该酶协调以Cu〜+(抗磁性)或Cu〜2(顺磁性)形式提供的Cu离子。从两种形式测得的速率差异中获得顺磁弛豫增强作用,并将其用作确定蛋白质结构的结构约束。当添加到〜1H-〜1 H距离约束中时,它们显示出结构精度的两倍提高。通过对反磁性分子的弛豫率进行高斯轴向涨落(GAF)分析,可以获得特定位置的顺序参数和运动的时标,并解释其与骨架结构和金属结合的关系。发现运动的时标在解决方案中的整体相关时间范围内,在此无法观察到此处表征的内部运动。

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  • 作者单位

    Centre de Resonance Magnetique Nucleaire a Tres Hauts Champs, Unite Mixte de Recherche 5280 Centre National de la Recherche Scientifique / Ecole Normale Superieure de Lyon, Universite Claude Bernard Lyon 1, 5 rue de la Doua, 69100 Villeurbanne, France;

    Centre de Resonance Magnetique Nucleaire a Tres Hauts Champs, Unite Mixte de Recherche 5280 Centre National de la Recherche Scientifique / Ecole Normale Superieure de Lyon, Universite Claude Bernard Lyon 1, 5 rue de la Doua, 69100 Villeurbanne, France;

    Department of Chemistry 'Ugo Schiff' and Centra di Risonanze Magnetiche, University of Florence, via Luigi Sacconi 6, 50019 Sesto Fiorentino, Fl, Italy;

    Department of Chemistry 'Ugo Schiff' and Centra di Risonanze Magnetiche, University of Florence, via Luigi Sacconi 6, 50019 Sesto Fiorentino, Fl, Italy;

    Department of Chemistry 'Ugo Schiff' and Centra di Risonanze Magnetiche, University of Florence, via Luigi Sacconi 6, 50019 Sesto Fiorentino, Fl, Italy;

    Department of Chemistry 'Ugo Schiff' and Centra di Risonanze Magnetiche, University of Florence, via Luigi Sacconi 6, 50019 Sesto Fiorentino, Fl, Italy;

    Centre de Resonance Magnetique Nucleaire a Tres Hauts Champs, Unite Mixte de Recherche 5280 Centre National de la Recherche Scientifique / Ecole Normale Superieure de Lyon, Universite Claude Bernard Lyon 1, 5 rue de la Doua, 69100 Villeurbanne, France;

    Centre de Resonance Magnetique Nucleaire a Tres Hauts Champs, Unite Mixte de Recherche 5280 Centre National de la Recherche Scientifique / Ecole Normale Superieure de Lyon, Universite Claude Bernard Lyon 1, 5 rue de la Doua, 69100 Villeurbanne, France;

    Centre de Resonance Magnetique Nucleaire a Tres Hauts Champs, Unite Mixte de Recherche 5280 Centre National de la Recherche Scientifique / Ecole Normale Superieure de Lyon, Universite Claude Bernard Lyon 1, 5 rue de la Doua, 69100 Villeurbanne, France;

  • 收录信息 美国《科学引文索引》(SCI);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
  • 关键词

    paramagnetism; nuclear relaxation rates; copper; microcrystal;

    机译:顺磁性核弛豫率;铜;微晶;
  • 入库时间 2022-08-18 00:40:29

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