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SSC:用于构建构象系统筛选文库的工具。

SSC: a tool for constructing libraries for systematic screening of conformers.

机构信息

Chemistry--School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, United Kingdom.

出版信息

J Comput Chem. 2011 Jul 15;32(9):2047-54. doi: 10.1002/jcc.21774. Epub 2011 Mar 31.

Abstract

Even a relatively small molecule with 10-20 atoms might have a few local minima, which correspond to different conformers. The number of local minima quickly increases with molecular size and the most common algorithms, driven by calculated forces, frequently identify a minimum, which is closest to the initial structure, rather than the most stable conformer. Here we discuss how to perform a systematic search of the conformational space for a chain-like molecule. Our approach is fully automated and a user has control which chemical bonds will be probed and with which increments. Moreover, whole fragments of the molecule, which are adjacent to each selected rotational bond, are rotated in a properly selected cylindrical coordinate system and unchemical hybridizations and some "clashes" between neighboring groups, which are common when standard Z-matrices are used, are avoided. A library of potentially relevant conformers is created with a tool, which we call SSC, denoting Systematic Screening of Conformers. Each member of the library is prescreened at a predefined level of theory and the most promising conformers are identified. Finally, they are further evaluated at a higher level of theory to identify the most stable structures and their physicochemical properties. As an example, we demonstrate the results of this approach for 2'-deoxycytidine.

摘要

即使是一个只有 10-20 个原子的相对较小的分子,也可能有几个局部最小值,这些局部最小值对应于不同的构象。随着分子尺寸的增加,局部最小值的数量迅速增加,而最常见的算法(由计算力驱动)通常会识别出最接近初始结构的最小值,而不是最稳定的构象。在这里,我们讨论如何对链状分子的构象空间进行系统搜索。我们的方法是完全自动化的,用户可以控制要探测的化学键以及以何种增量进行探测。此外,与每个选定的旋转键相邻的分子的整个片段都在适当选择的圆柱坐标系中旋转,并且避免了在使用标准 Z 矩阵时常见的非化学杂化和相邻基团之间的一些“冲突”。使用我们称为 SSC(构象系统筛选)的工具创建了一个潜在相关构象库,该库的每个成员都在预定义的理论水平上进行了预筛选,并确定了最有前途的构象。最后,在更高的理论水平上对它们进行进一步评估,以确定最稳定的结构及其物理化学性质。作为一个例子,我们展示了这种方法对 2'-脱氧胞苷的结果。

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