首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Electronic distributions within protein phenylalanine aromatic rings are reflected by the three-dimensional oxygen atom environments.
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Electronic distributions within protein phenylalanine aromatic rings are reflected by the three-dimensional oxygen atom environments.

机译:蛋白质苯丙氨酸芳环内的电子分布由三维氧原子环境反映。

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摘要

The atomic environments of 170 phenylalanine-residue aromatic rings from 28 protein crystal structures are transformed into a common orientation and combined to calculate an average three-dimensional environment. The spatial distribution of atom types in this environment reveals a preferred interaction between oxygen atoms and the edge of the planar aromatic rings. From the difference in frequency of interaction of oxygen atoms with the edge and the top of the ring, an apparent net free energy difference of interaction favoring the edge of the ring is estimated to be about -1 kcal/mol (1 cal = 4.184 J). Ab initio quantum mechanical calculations, performed on a model consisting of benzene and formamide, indicate that the observed geometry is stabilized by a favorable enthalpic interaction. Although benzene rings are considered to be nonpolar, the electron distribution is a complex multipole with no net dipole moment. The observed interaction orientation frequencies demonstrate that these multipolar electron distributions, when occurring at the short distances encountered in densely packed protein molecules, are significant determinants of internal packing geometries.
机译:将来自28个蛋白质晶体结构的170个苯丙氨酸残基芳香环的原子环境转换为相同的方向,并进行组合以计算平均的三维环境。在这种环境下原子类型的空间分布揭示了氧原子与平面芳香环边缘之间的相互作用。根据氧原子与环的边缘和顶部相互作用的频率差异,估计有利于环边缘的相互作用的表观净自由能差约为-1 kcal / mol(1 cal = 4.184 J )。在由苯和甲酰胺组成的模型上进行的从头算起的量子力学计算表明,所观察到的几何形状通过有利的焓相互作用而得以稳定。尽管认为苯环是非极性的,但电子分布是没有净偶极矩的复杂多极。观察到的相互作用取向频率表明,这些多极电子分布在紧密堆积的蛋白质分子中遇到的短距离处发生时,是内部堆积几何形状的重要决定因素。

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