Jackson Michael R, Beahm Robert, Duvvuru Suman, Narasimhan Chandrasegara, Wu Jun, Wang Hsin-Neng, Philip Vivek M, Hinde Robert J, Howell Elizabeth E
Department of Biochemistry, Cellular, and Molecular Biology, University of Tennessee, Knoxville, Tennessee 37996-0840, USA.
J Phys Chem B. 2007 Jul 19;111(28):8242-9. doi: 10.1021/jp0661995. Epub 2007 Jun 20.
Noncovalent interactions are quite important in biological structure-function relationships. To study the pairwise interaction of aromatic amino acids (phenylalanine, tyrosine, tryptophan) with anionic amino acids (aspartic and glutamic acids), small molecule mimics (benzene, phenol or indole interacting with formate) were used at the MP2 level of theory. The overall energy associated with an anion-quadrupole interaction is substantial (-9.5 kcal/mol for a benzene-formate planar dimer at van der Waals contact distance), indicating the electropositive ring edge of an aromatic group can interact with an anion. Deconvolution of the long-range coplanar interaction energy into fractional contributions from charge-quadrupole interactions, higher-order electrostatic interactions, and polarization terms was achieved. The charge-quadrupole term contributes between 30 to 45% of the total MP2 benzene-formate interaction; most of the rest of the interaction arises from polarization contributions. Additional studies of the Protein Data Bank (PDB Select) show that nearly planar aromatic-anionic amino acid pairs occur more often than expected from a random angular distribution, while axial aromatic-anionic pairs occur less often than expected; this demonstrates the biological relevance of the anion-quadrupole interaction. While water may mitigate the strength of these interactions, they may be numerous in a typical protein structure, so their cumulative effect could be substantial.
非共价相互作用在生物结构 - 功能关系中非常重要。为了研究芳香族氨基酸(苯丙氨酸、酪氨酸、色氨酸)与阴离子氨基酸(天冬氨酸和谷氨酸)之间的成对相互作用,在MP2理论水平上使用了小分子模拟物(苯、苯酚或吲哚与甲酸相互作用)。与阴离子 - 四极相互作用相关的总能量相当可观(在范德华接触距离下,苯 - 甲酸平面二聚体为 -9.5千卡/摩尔),这表明芳香基团的电正性环边缘可以与阴离子相互作用。实现了将远程共面相互作用能分解为电荷 - 四极相互作用、高阶静电相互作用和极化项的分数贡献。电荷 - 四极项占MP2苯 - 甲酸相互作用总量的30%至45%;其余大部分相互作用来自极化贡献。对蛋白质数据库(PDB Select)的进一步研究表明,近乎平面的芳香族 - 阴离子氨基酸对出现的频率比随机角度分布预期的要高,而轴向芳香族 - 阴离子对出现的频率比预期的要低;这证明了阴离子 - 四极相互作用的生物学相关性。虽然水可能会减弱这些相互作用的强度,但在典型的蛋白质结构中它们可能很多,因此它们的累积效应可能很大。