首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Magic-Angle Spinning Frequencies beyond 300 kHz Are Necessary To Yield Maximum Sensitivity in Selectively Methyl Protonated Protein Samples in Solid-State NMR
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Magic-Angle Spinning Frequencies beyond 300 kHz Are Necessary To Yield Maximum Sensitivity in Selectively Methyl Protonated Protein Samples in Solid-State NMR

机译:超过300kHz的魔法角纺丝频率是在固态NMR中选择性甲基质子化蛋白样品中产生最大敏感性的最大敏感性

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摘要

In the last decade, proton detection in magic-angle spinning (MAS) solid-state NMR became a popular strategy for biomolecular structure determination. In particular, probe technology has experienced tremendous progress with smaller and smaller diameter rotors achieving ever higher MAS frequencies. MAS rotation frequencies beyond 100 kHz allow to observe and assign protons in fully protonated samples. In these experiments, resolution is however compromised as homogeneous proton-proton dipolar coupling interactions are not completely averaged out. Using a combination of experiments and simulations, we analyze the MAS frequency dependent intensities of the H-1,C-13 methyl correlation peaks of a selectively methyl protonated (CH3) microcrystalline sample of the chicken a-spectrin SH3 domain (alpha-SH3). Extensive simulations involving nine spins employing the program SIMPSON allow to predict the MAS frequency dependence of the proton intensities. The experimental results are used to validate the simulations. As quantitative measure, we determine the characteristic MAS frequency, which is necessary to obtain 50% of the maximum achievable sensitivity. Our results show that this frequency is site-specific and strongly depends on the local methyl density. We find that the characteristic MAS frequency ranges from as low as 20 kHz up to 324 kHz with the average value of 135 +/- 88 kHz for this particular sample at a magnetic field strength of 11.7 T. Inclusion of side chain dynamics in the analysis reduces the average characteristic MAS frequency to 104 +/- 68 kHz within the range of 11-261 kHz. In case, 80% of the maximum sensitivity shall be achieved, MAS rotation frequencies of 498 +/- 370 and 310 +/- 227 kHz are required with and without including side chains dynamics in the analysis, respectively.
机译:在过去的十年中,魔法角纺(MAS)固态NMR的质子检测成为生物分子结构测定的流行策略。特别是,探头技术经历了巨大的进展,具有较小直径的转子,实现更高的MAS频率。 MAS旋转频率超过100 kHz,允许在完全质子化样品中观察和分配质子。然而,在这些实验中,尽管均匀的质子 - 质子偶极偶联相互作用不完全平均分辨率。使用实验和仿真的组合,我们分析了鸡A-SpectrinsH3结构域的选择性甲基质子化(CH3)微晶样品的H-1,C-13甲基相关峰的MAS频率依赖性峰值(α-SH3) 。广泛的模拟涉及九个旋转的血管,采用计划辛普森允许预测质子强度的MAS频率依赖性。实验结果用于验证模拟。作为定量措施,我们确定了所需的特征MAS频率,这是获得最大可实现敏感性的50%。我们的结果表明,这种频率是特异性的,强烈取决于局部甲基密度。我们发现特征MAS频率低至20kHz至324kHz,该特殊样品的平均值为135 +/- 88 kHz,在磁场强度为11.7吨的磁场强度,在分析中包含侧链动力学将平均特征MAS频率降低至104 +/- 68 kHz,范围为11-261 kHz。在情况下,应达到最大灵敏度的80%,在分析中分别需要498 +/- 370和310 +/- 227 kHz的MAS旋转频率。

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    Deutsch Forschungszentrum Gesundheit &

    Umwelt HMG Helmholtz Zentrum Munchen Ingolstadter Landstr 1 D-85764 Neuherberg Germany;

    Deutsch Forschungszentrum Gesundheit &

    Umwelt HMG Helmholtz Zentrum Munchen Ingolstadter Landstr 1 D-85764 Neuherberg Germany;

    TUM Munich Ctr Integrated Prot Sci CIPS M Dept Chem Lichtenbergstr 4 D-85747 Garching Germany;

    TUM Munich Ctr Integrated Prot Sci CIPS M Dept Chem Lichtenbergstr 4 D-85747 Garching Germany;

    Bruker BioSpin GmbH Silberstreifen 4 D-76287 Rheinstetten Germany;

    Bruker BioSpin GmbH Silberstreifen 4 D-76287 Rheinstetten Germany;

    TUM Munich Ctr Integrated Prot Sci CIPS M Dept Chem Lichtenbergstr 4 D-85747 Garching Germany;

    Deutsch Forschungszentrum Gesundheit &

    Umwelt HMG Helmholtz Zentrum Munchen Ingolstadter Landstr 1 D-85764 Neuherberg Germany;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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