Nagy Peter I, Erhardt Paul W
Center for Drug Design and Development, College of Pharmacy, The University of Toledo, Toledo, OH 43606-3390, USA.
J Phys Chem A. 2006 Dec 28;110(51):13923-32. doi: 10.1021/jp061113t.
Binding energies for hydrogen-bonded complexes of six cyclic ethers with five hydrogen-bond donor molecules that mimic selected amino acid side chains have been calculated at the MP2/6-31G*, MP2/6-31+G*, MP2/6-311++G**(single point), and MP2/aug-cc-pvtz levels, using geometries obtained with or without counterpoise corrections throughout the geometry optimization. The calculated basis set superposition error (BSSE) amounts to 10-20% and 5-10% of the uncorrected binding energies for the neutral and ionic species, respectively, at the MP2/aug-cc-pvtz level. The authors conclude that the O...H distances in the hydrogen bonds and binding energies for the studied systems may be determined with uncertainties of up to 0.08 A and 1-2 kcal/mol, respectively, in comparison with the MP2/aug-cc-pvtz values at a reasonable computational cost by performing standard geometry optimization at the MP2/6-31+G* level. Hydrogen-bond formation energies are more negative for cyclic ethers compared to their counterparts with a C=C double bond in the ring next to the oxygen atom. The less negative hydrogen-bonding energy and the increased O...H separation have been attributed to the reduced basicity of the ether oxygen when the lone pairs can enter conjugation with the pi-electrons of the Calpha=Cbeta double bond. The present study is the first step toward the development of an affordable computational level for estimating the binding energies of natural product, fused ring ether systems to the human estrogen receptor.
已在MP2/6 - 31G*、MP2/6 - 31+G*、MP2/6 - 311++G**(单点)和MP2/aug - cc - pvtz水平下,计算了六种环醚与五个模拟选定氨基酸侧链的氢键供体分子形成的氢键复合物的结合能,在整个几何优化过程中使用了有无抵消校正获得的几何结构。在MP2/aug - cc - pvtz水平下,计算得到的基组叠加误差(BSSE)分别占中性和离子物种未校正结合能的10 - 20%和5 - 10%。作者得出结论,与MP2/aug - cc - pvtz值相比,通过在MP2/6 - 31+G*水平进行标准几何优化,以合理的计算成本,所研究体系中氢键的O...H距离和结合能的测定不确定性分别可达0.08 Å和1 - 2 kcal/mol。与氧原子旁边的环中具有C = C双键的对应物相比,环醚的氢键形成能更负。氢键结合能较不负值以及O...H间距增加归因于当孤对电子可与Cα = Cβ双键的π电子共轭时醚氧碱性的降低。本研究是朝着开发一种经济实惠的计算水平迈出的第一步,该计算水平用于估计天然产物稠环醚系统与人雌激素受体的结合能。