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用于大环聚酮化合物构象分析的OPLS-AA力场参数化

Parameterization of OPLS-AA force field for the conformational analysis of macrocyclic polyketides.

作者信息

Kahn Kalju, Bruice Thomas C

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Barbara, Santa Barbara, California 93106, USA.

出版信息

J Comput Chem. 2002 Jul 30;23(10):977-96. doi: 10.1002/jcc.10051.

Abstract

The parameters for the OPLS-AA potential energy function have been extended to include some functional groups that are present in macrocyclic polyketides. Existing OPLS-AA torsional parameters for alkanes, alcohols, ethers, hemiacetals, esters, and ketoamides were improved based on MP2/aug-cc-pVTZ and MP2/aug-cc-pVDZ calculations. Nonbonded parameters for the sp(3) carbon and oxygen atoms were refined using Monte Carlo simulations of bulk liquids. The resulting force field predicts conformer energies and torsional barriers of alkanes, alcohols, ethers, and hemiacetals with an overall RMS deviation of 0.40 kcal/mol as compared to reference data. Densities of 19 bulk liquids are predicted with an average error of 1.1%, and heats of vaporization are reproduced within 2.4% of experimental values. The force field was used to perform conformational analysis of smaller analogs of the macrocyclic polyketide drug FK506. Structures that adopted low-energy conformations similar to that of bound FK506 were identified. The results show that a linker of four ketide units constitutes the shortest effector domain that allows binding of the ketide drugs to FKBP proteins. It is proposed that the exact chemical makeup of the effector domain has little influence on the conformational preference of tetraketides.

摘要

OPLS-AA势能函数的参数已扩展到包括大环聚酮类化合物中存在的一些官能团。基于MP2/aug-cc-pVTZ和MP2/aug-cc-pVDZ计算,对烷烃、醇、醚、半缩醛、酯和酮酰胺现有的OPLS-AA扭转参数进行了改进。使用本体液体的蒙特卡罗模拟对sp(3)碳原子和氧原子的非键参数进行了优化。与参考数据相比,所得力场预测的烷烃、醇、醚和半缩醛的构象体能量和扭转势垒的总体均方根偏差为0.40 kcal/mol。预测了19种本体液体的密度,平均误差为1.1%,汽化热的再现误差在实验值的2.4%以内。该力场用于对大环聚酮类药物FK506的较小类似物进行构象分析。确定了采用与结合态FK506相似的低能量构象的结构。结果表明,四个酮基单元的连接体构成了允许酮基药物与FKBP蛋白结合的最短效应结构域。有人提出,效应结构域的确切化学组成对四酮化物的构象偏好影响很小。

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