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Quantum chemical 13Cα chemical shift calculations for protein NMR structure determination, refinement, and validation

机译:用于蛋白质NMR结构确定,优化和验证的量子化学13Cα化学位移计算

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摘要

A recently determined set of 20 NMR-derived conformations of a 48-residue all-α-helical protein, (PDB ID code 2JVD), is validated here by comparing the observed 13Cα chemical shifts with those computed at the density functional level of theory. In addition, a recently introduced physics-based method, aimed at determining protein structures by using NOE-derived distance constraints together with observed and computed 13Cα chemical shifts, was applied to determine a new set of 10 conformations, (Set-bt), as a blind test for the same protein. A cross-validation of these two sets of conformations in terms of the agreement between computed and observed 13Cα chemical shifts, several stereochemical quality factors, and some NMR quality assessment scores reveals the good quality of both sets of structures. We also carried out an analysis of the agreement between the observed and computed 13Cα chemical shifts for a slightly longer construct of the protein solved by x-ray crystallography at 2.0-Å resolution (PDB ID code 3BHP) with an identical amino acid residue sequence to the 2JVD structure for the first 46 residues. Our results reveal that both of the NMR-derived sets, namely 2JVD and Set-bt, are somewhat better representations of the observed 13Cα chemical shifts in solution than the 3BHP crystal structure. In addition, the 13Cα-based validation analysis appears to be more sensitive to subtle structural differences across the three sets of structures than any other NMR quality-assessment scores used here, and, although it is computationally intensive, this analysis has potential value as a standard procedure to determine, refine, and validate protein structures.
机译:通过将观察到的13Cα化学位移与在理论密度函数水平上计算出的13Cα化学位移进行比较,可以验证一组最近确定的,由20个NMR衍生的48个残基全α-螺旋蛋白构型(PDB ID码2JVD)。此外,最近引入了一种基于物理学的方法,该方法旨在通过使用NOE衍生的距离约束以及观察到的和计算出的13Cα化学位移来确定蛋白质结构,从而确定了一组新的10种构象(Set-bt),对相同蛋白质进行盲测。根据计算得到的13Cα化学位移和观察到的13Cα化学位移之间的一致性,几个立体化学质量因子以及一些NMR质量评估得分,对这两组构象进行交叉验证,可以揭示这两组结构的良好质量。我们还对观察到的和计算出的13Cα化学位移之间的一致性进行了分析,该蛋白通过X射线晶体学以2.0-Å的分辨率(PDB ID码3BHP)解决,具有与前46个残基的2JVD结构。我们的结果表明,与3BHP晶体结构相比,NMR衍生的两个集合(即2JVD和Set-bt)在溶液中观察到的13Cα化学位移都更好。此外,与此处使用的任何其他NMR质量评估得分相比,基于13Cα的验证分析似乎对三组结构之间的细微结构差异更敏感,尽管计算量大,但该分析具有潜在的价值。确定,提纯和验证蛋白质结构的标准程序。

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