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Quantitative Analysis of Protein Backbone Dynamics in Microcrystalline Ubiquitin by Solid-State NMR Spectroscopy

机译:固态NMR光谱定量分析微晶遍在蛋白中蛋白质骨架的动力学

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摘要

Characterization of protein dynamics by solid-state NMR spectroscopy requires robust and accurate measurement protocols, which are not yet fully developed. In this study, we investigate the backbone dynamics of microcrystalline ubiquitin using different approaches. A rotational-echo double-resonance type (REDOR-type) methodology allows one to accurately measure ~1H-~(15)N order parameters in highly deuterated samples. We show that the systematic errors in the REDOR experiment are as low as 1% or even less, giving access to accurate data for the amplitudes of backbone mobility. Combining such dipolar-coupling-derived order parameters with autocorrelated and cross-correlated ~ (15)N relaxation rates, we are able to quantitate amplitudes and correlation times of backbone dynamics on picosecond and nanosecond time scales in a residue-resolved manner. While the mobility on picosecond time scales appears to have rather uniform amplitude throughout the protein, we unambiguously identify and quantitate nanosecond mobility with order parameters S~2 as low as 0.8 in some regions of the protein, where nanosecond dynamics has also been revealed in solution state. The methodology used here, a combination of accurate dipolar-coupling measurements and different relaxation parameters, yields details about dynamics on different time scales and can be applied to solid protein samples such as amyloid fibrils or membrane proteins.
机译:通过固态NMR光谱对蛋白质动力学进行表征需要鲁棒且准确的测量方案,但尚未完全开发出来。在这项研究中,我们使用不同的方法调查微晶遍在蛋白的骨架动力学。旋转回波双共振类型(REDOR型)方法使人们能够准确地测量高度氘化样品中的〜1H-〜(15)N阶参数。我们表明,REDOR实验中的系统误差可低至1%甚至更低,从而可以访问骨干移动幅度的准确数据。将这种偶极耦合衍生的阶次参数与自相关和互相关〜(15)N弛豫率结合起来,我们能够以残基分辨的方式在皮秒和纳秒的时间尺度上量化主干动力学的幅度和相关时间。尽管皮秒级时标上的迁移率似乎在整个蛋白质中具有相当均匀的振幅,但我们明确地鉴定和定量了纳秒迁移率,在蛋白质的某些区域中的顺序参数S〜2低至0.8,在溶液中还显示了纳秒动态州。此处使用的方法结合了精确的偶极耦合测量和不同的弛豫参数,可得出有关不同时间尺度上动力学的详细信息,并可应用于诸如淀粉样蛋白原纤维或膜蛋白之类的固体蛋白样品。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2010年第45期|p.15957-15967|共11页
  • 作者单位

    ETH Zuerich, Physical Chemistry, Wolfgang-Pauli-Strasse 10, 8093 Zurich, Switzerland;

    ETH Zuerich, Physical Chemistry, Wolfgang-Pauli-Strasse 10, 8093 Zurich, Switzerland;

    ETH Zuerich, Physical Chemistry, Wolfgang-Pauli-Strasse 10, 8093 Zurich, Switzerland;

  • 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);
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  • 正文语种 eng
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