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Quadrupole Central Transition ~(17)O NMR Spectroscopy of Biological Macromolecules in Aqueous Solution

机译:水溶液中生物大分子的四极中心跃迁〜(17)O NMR光谱

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摘要

We demonstrate a general nuclear magnetic resonance (NMR) spectroscopic approach in obtaining high-resolution ~(17)O (spin-5/2) NMR spectra for biological macro-molecules in aqueous solution. This approach, termed quadrupole central transition (QCT) NMR, is based on the multiexponential relaxation properties of half-integer quadrupolar nuclei in molecules undergoing slow isotropic tumbling motion. Under such a circumstance, Redfield's relaxation theory predicts that the central transition, m_1 = +1/2 (←→) -1/2, can exhibit relatively long transverse relaxation time constants, thus giving rise to relatively narrow spectral lines. Using three robust protein-ligand complexes of size ranging from 65 to 240 kDa, we have obtained ~(17)O QCT NMR spectra with unprecedented resolution, allowing the chemical environment around the targeted oxygen atoms to be directly probed for the first time. The new QCT approach increases the size limit of molecular systems previously attainable by solution ~(17)O NMR by nearly 3 orders of magnitude (1000-fold). We have also shown that, when both quadrupole and shielding anisotropy interactions are operative, ~(17)O QCT NMR spectra display an analogous transverse relaxation optimized spectroscopy type behavior in that the condition for optimal resolution depends on the applied magnetic field. We conclude that, with the currently available moderate and ultrahigh magnetic fields (14 T and higher), this ~(17)O QCT NMR approach is applicable to a wide variety of biological macromolecules. The new ~(17)O NMR parameters so obtained for biological molecules are complementary to those obtained from H, C, and ~(15)N NMR studies.
机译:我们展示了一种通用的核磁共振(NMR)光谱方法,可用于获得水溶液中生物大分子的高分辨率〜(17)O(spin-5 / 2)NMR光谱。这种称为四极中心跃迁(QCT)NMR的方法是基于半整数四极核在经历缓慢各向同性翻滚运动的分子中的多指数弛豫特性。在这种情况下,雷德菲尔德的弛豫理论预测中心跃迁m_1 = +1/2(←→)-1/2可以表现出较长的横向弛豫时间常数,从而产生相对较窄的光谱线。使用大小在65到240 kDa之间的三种坚固的蛋白质-配体复合物,我们获得了具有前所未有的分辨率的〜(17)O QCT NMR光谱,从而首次可以直接探测目标氧原子周围的化学环境。新的QCT方法将以前通过溶液〜(17)O NMR可获得的分子系统的尺寸限制增加了近3个数量级(1000倍)。我们还表明,当四极子和屏蔽各向异性相互作用都起作用时,〜(17)O QCT NMR光谱显示出类似的横向弛豫优化光谱学类型的行为,因为最佳分辨率的条件取决于所施加的磁场。我们得出的结论是,利用当前可用的中等和超高磁场(14 T和更高的磁场),此〜(17)O QCT NMR方法适用于多种生物大分子。如此获得的用于生物分子的新〜(17)O NMR参数与从H,C和〜(15)N NMR研究获得的参数互补。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第4期|p.920-932|共13页
  • 作者

    Jianfeng Zhu; Gang Wu;

  • 作者单位

    Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, Ontario, Canada K7L 3N6;

    Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, Ontario, Canada K7L 3N6;

  • 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
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  • 入库时间 2022-08-18 03:14:05

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