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Investigation of the NMR Spin-Spin Coupling Constants across the Hydrogen Bonds in Ubiquitin: The Nature of the Hydrogen Bond as Reflected by the Coupling Mechanism

机译:遍在遍在蛋白中氢键的NMR自旋-自旋偶合常数的研究:氢键的性质反映在耦合机制上

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摘要

The indirect scalar NMR spin-spin coupling constants across the H-bonds of the protein ubiquitin were calculated, including the Fermi contact, the diamagnetic spin-orbit, the paramagnetic spin-orbit, and the spin dipole term, employing coupled perturbed density functional theory in combination with the B3LYP functional and different basis sets: (9s,5p,1d/5s,1p)[6s,4p,1d/3s,1p] and (11s,7p,2d/5s,1p)[7s,6p,2d/4s,2p]. Four different models based on either the crystal or the aqueous solution structure of ubiquitin were used to describe H-bonding for selected residue pairs of ubiquitin. Calculated and measured 3hJ(NC') coupling constants differ depending on the model used, which is due to the fact that the geometry of ubiquitin is different in the solid state and in aqueous solution. Also, conformational averaging leads to a decrease of the magnitude of the measured ~(3h)J(NC') constants, which varies locally (larger for β-sheets, smaller for α-helix). Two different spin-spin coupling mechanisms were identified. While mechanism I transmits spin polarization via an electric field effect, mechanism II involves also electron delocalization from the lone pair of the carbonyl oxygen to the antibonding orbital of the N-H bond. Mechanism I is more important in the crystal structure of ubiquitin, while in aqueous solution, mechanism II plays a larger role. It is possible to set up simple relationships between the spin-spin coupling constants associated with the H bond in proteins and the geometrical features of these bonds. The importance of the ~(3h)J(NC') and ~1J(N-H) constants as descriptors for the H-bond is emphasized.
机译:利用耦合扰动密度泛函理论计算了遍在蛋白泛素的H键上的间接标量NMR自旋-自旋耦合常数,包括费米接触,反磁自旋轨道,顺磁自旋轨道和自旋偶极子项。结合B3LYP功能和不同的基础集:(9s,5p,1d / 5s,1p)[6s,4p,1d / 3s,1p]和(11s,7p,2d / 5s,1p)[7s,6p, 2d / 4s,2p]。使用基于泛素的晶体或水溶液结构的四个不同模型描述泛素的选定残基对的H键。根据所使用的模型,计算和测量的3hJ(NC')耦合常数会有所不同,这是由于泛素的几何形状在固态和水溶液中均不同。同样,构象平均导致所测得的〜(3h)J(NC')常数的幅度减小,该常数局部变化(对于β-折叠较大,对于α-螺旋较小)。确定了两种不同的自旋-自旋耦合机理。机理I通过电场效应传递自旋极化,机理II还涉及电子从羰基氧的孤对到N-H键的反键轨道的离域化。机制I在泛素的晶体结构中更重要,而在水溶液中,机理II发挥更大的作用。可以在蛋白质中与H键相关的自旋-自旋偶联常数与这些键的几何特征之间建立简单的关系。强调了〜(3h)J(NC')和〜1J(N-H)常数作为H键的描述符的重要性。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2004年第16期|p. 5093-5107|共15页
  • 作者单位

    Department of Theoretical Chemistry, Goteborg University, Reutersgatan 2, S-41320 Goteborg, Sweden;

    Department of Theoretical Chemistry, Goteborg University, Reutersgatan 2, S-41320 Goteborg, Sweden;

    Department of Theoretical Chemistry, Goteborg University, Reutersgatan 2, S-41320 Goteborg, Sweden;

    Department of Theoretical Chemistry, Goteborg University, Reutersgatan 2, S-41320 Goteborg, Sweden;

  • 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

  • 入库时间 2022-08-18 03:24:45

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