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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Evaluating electronic structure methods for accurate calculation of 1919 F chemical shifts in fluorinated amino acids
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Evaluating electronic structure methods for accurate calculation of 1919 F chemical shifts in fluorinated amino acids

机译:评估电子结构方法,用于准确计算 19 19 f化学位移在氟化氨基酸中

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摘要

> The ability of electronic structure methods (11 density functionals, HF, and MP2 calculations; two basis sets and two solvation models) to accurately calculate the 19 F chemical shifts of 31 structures of fluorinated amino acids and analogues with known experimental 19 F NMR spectra has been evaluated. For this task, BHandHLYP, ωB97X, and Hartree–Fock with scaling factors (provided within) are most accurate. Additionally, the accuracy of methods to calculate relative changes in fluorine shielding across 23 sets of structural variants, such as zwitterionic amino acids versus side chains only, was also determined. This latter criterion may be a better indicator of reliable methods for the ultimate goal of assigning and interpreting chemical shifts of fluorinated amino acids in proteins. It was found that MP2 and M062X calculations most accurately assess changes in shielding among analogues. These results serve as a guide for computational developments to calculate 19 F chemical shifts in biomolecular environments. ? 2017 Wiley Periodicals, Inc.
机译: >电子结构方法的能力(11密度函数,HF和MP2计算;两个基集和两个溶剂化模型)为了精确计算31种氟化氨基酸和具有已知实验 19 F NMR光谱的类似物的化学位移。对于此任务,Bhandhlyp,ωb97x和具有缩放因子(内部)的Hartree-fock最准确。另外,还确定了仅在23组结构变体上计算氟屏蔽中相对变化的方法的准确性,例如只有两性离子氨基酸与侧链。这种后一种标准可以是可靠方法的最佳指标,用于在蛋白质中分配和解释氟化氨基酸的化学位移的最终目标。发现MP2和M062X计算最准确地评估类似物之间屏蔽的变化。这些结果用作计算生物分子环境中的化学变化的计算发展指南。还2017 Wiley期刊,Inc。

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