氨基酸侧链的电子性质:取代基效应的量子力学计算。

Donard S Dwyer
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引用次数: 47

摘要

背景:氨基酸侧链的电子性质,如感应效应和场效应,尚未被详细表征。量子力学(QM)计算和解释取代基效应的基本方程可能提供对这些重要性质的洞察。通过对PM3电子分布和极化率的分析,推导出描述氨基酸侧链的立体因素、感应效应、共振效应和场效应的定量尺度。结果:这些研究表明:(1)不同的半经验QM方法对侧链基团的电子效应得到了相似的结果;(2)反映分子可变形性的极化率,代表电子方面的空间因子;(3)诱导效应有助于氨基酸对α -螺旋的倾向。结论:这些数据提供了氨基酸侧链取代基效应的初步表征,并表明这些性质影响肽主链上的电子密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Electronic properties of amino acid side chains: quantum mechanics calculation of substituent effects.

Electronic properties of amino acid side chains: quantum mechanics calculation of substituent effects.

Electronic properties of amino acid side chains: quantum mechanics calculation of substituent effects.

Electronic properties of amino acid side chains: quantum mechanics calculation of substituent effects.

Background: Electronic properties of amino acid side chains such as inductive and field effects have not been characterized in any detail. Quantum mechanics (QM) calculations and fundamental equations that account for substituent effects may provide insight into these important properties. PM3 analysis of electron distribution and polarizability was used to derive quantitative scales that describe steric factors, inductive effects, resonance effects, and field effects of amino acid side chains.

Results: These studies revealed that: (1) different semiempirical QM methods yield similar results for the electronic effects of side chain groups, (2) polarizability, which reflects molecular deformability, represents steric factors in electronic terms, and (3) inductive effects contribute to the propensity of an amino acid for alpha-helices.

Conclusion: The data provide initial characterization of the substituent effects of amino acid side chains and suggest that these properties affect electron density along the peptide backbone.

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