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碳水化合物-芳香族相互作用的建模:从头算能量学与力场性能

Modelling of carbohydrate-aromatic interactions: ab initio energetics and force field performance.

作者信息

Spiwok Vojtech, Lipovová Petra, Skálová Tereza, Vondrácková Eva, Dohnálek Jan, Hasek Jindrich, Králová Blanka

机构信息

Department of Biochemistry, Institute of Chemical Technology in Prague, Technická 5, 166 28, Prague 6, Czech Republic.

出版信息

J Comput Aided Mol Des. 2005 Dec;19(12):887-901. doi: 10.1007/s10822-005-9033-z. Epub 2006 Apr 11.

Abstract

Aromatic amino acid residues are often present in carbohydrate-binding sites of proteins. These binding sites are characterized by a placement of a carbohydrate moiety in a stacking orientation to an aromatic ring. This arrangement is an example of CH/pi interactions. Ab initio interaction energies for 20 carbohydrate-aromatic complexes taken from 6 selected ultra-high resolution X-ray structures of glycosidases and carbohydrate-binding proteins were calculated. All interaction energies of a pyranose moiety with a side chain of an aromatic residue were calculated as attractive with interaction energy ranging from -2.8 to -12.3 kcal/mol as calculated at the MP2/6-311+G(d) level. Strong attractive interactions were observed for a wide range of orientations of carbohydrate and aromatic ring as present in selected X-ray structures. The most attractive interaction was associated with apparent combination of CH/pi interactions and classical H-bonds. The failure of Hartree-Fock method (interaction energies from +1.0 to -6.9 kcal/mol) can be explained by a dispersion nature of a majority of the studied complexes. We also present a comparison of interaction energies calculated at the MP2 level with those calculated using molecular mechanics force fields (OPLS, GROMOS, CSFF/CHARMM, CHEAT/CHARMM, Glycam/AMBER, MM2 and MM3). For a majority of force fields there was a strong correlation with MP2 values. RMSD between MP2 and force field values were 1.0 for CSFF/CHARMM, 1.2 for Glycam/AMBER, 1.2 for GROMOS, 1.3 for MM3, 1.4 for MM2, 1.5 for OPLS and to 2.3 for CHEAT/CHARMM (in kcal/mol). These results show that molecular mechanics approximates interaction energies very well and support an application of molecular mechanics methods in the area of glycochemistry and glycobiology.

摘要

芳香族氨基酸残基通常存在于蛋白质的碳水化合物结合位点。这些结合位点的特征是碳水化合物部分以堆叠方向与芳香环排列。这种排列是CH/π相互作用的一个例子。计算了从6个选定的糖苷酶和碳水化合物结合蛋白的超高分辨率X射线结构中获取的20个碳水化合物 - 芳香族复合物的从头算相互作用能。吡喃糖部分与芳香族残基侧链的所有相互作用能计算结果均为吸引作用,在MP2/6 - 311 + G(d)水平下,相互作用能范围为 - 2.8至 - 12.3 kcal/mol。在选定的X射线结构中,观察到碳水化合物和芳香环的广泛取向都存在强吸引相互作用。最具吸引力的相互作用与CH/π相互作用和经典氢键的明显组合有关。哈特里 - 福克方法的失败(相互作用能从 + 1.0至 - 6.9 kcal/mol)可以用大多数研究复合物的色散性质来解释。我们还比较了在MP2水平计算的相互作用能与使用分子力学力场(OPLS、GROMOS、CSFF/CHARMM、CHEAT/CHARMM、Glycam/AMBER、MM2和MM3)计算的相互作用能。对于大多数力场,与MP2值有很强的相关性。MP2和力场值之间的均方根偏差对于CSFF/CHARMM为1.0,对于Glycam/AMBER为1.2,对于GROMOS为1.2,对于MM3为1.3,对于MM2为1.4,对于OPLS为1.5,对于CHEAT/CHARMM为2.3(以kcal/mol为单位)。这些结果表明分子力学能很好地近似相互作用能,并支持分子力学方法在糖化学和糖生物学领域的应用。

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