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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Low-Mode Conformational Search Elucidated: Application to C_(39)H_(80) and Flexible Docking of 9-Deazaguanine Inhibitors into PNP
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Low-Mode Conformational Search Elucidated: Application to C_(39)H_(80) and Flexible Docking of 9-Deazaguanine Inhibitors into PNP

机译:阐明了低模构象搜索:在C_(39)H_(80)中的应用以及将9-脱氮鸟嘌呤抑制剂柔性对接到PNP中的应用

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摘要

We previously described a new conformational search method, termed low-mode search (LMOD), and discussed its utility for conformational searches performed on cycloalkanes and a cyclic penta-peptide.~1 In this report, we discuss a rigorous implementation of mode following (c-LMOD) for conformational searching, and we demonstrate that for a conformational search involving cycloheptadecane, this rigorous implementation is capable of finding all of the previously known structures. To the best of our knowledge, this is the first computational proof that mode following can be used for conformational searches conducted on a complex molecular system. We show, however, that, as expected, it is generally inefficient to perform a conformational search in this manner. Nonetheless, c-LMOD has been shown to be an excellent method for conducting conformational analyses involving conformational interconversions, where the location of saddle points is important. We also describe refinement to our original LMOD procedure (l-LMOD) and discuss its utility for a difficult conformational search problem, namely locating the global minimum energy conformation of C_(39)H_(80). For this search, l-LMOD combined with limited torsional Monte Carlo movement was able to locate the lowest energy structures yet reported, and significantly outperformed a pure torsional Monte Carlo and a genetic algorithm-based search. Furthermore, we also demonstrate the utility of l-LMOD combined with random translation/rotation of a ligand for the extremely difficult problem of docking flexible ligands into flexible protein binding sites on a system that includes 9-deaza-guanine-based inhibitors docked into the flexible biding site of PNP.
机译:先前我们描述了一种称为低模式搜索(LMOD)的新构象搜索方法,并讨论了其在环烷烃和环状五肽上进行构象搜索的实用性。〜1在本报告中,我们讨论了严格遵循以下方式进行模式实现( c-LMOD)进行构象搜索,我们证明了对于涉及环十七烷的构象搜索,这种严格的实现方式能够找到所有先前已知的结构。据我们所知,这是第一个计算证明,模式跟踪可用于在复杂分子系统上进行构象搜索。但是,我们证明,正如预期的那样,以这种方式执行构象搜索通常效率低下。尽管如此,c-LMOD已被证明是进行构象分析的极佳方法,涉及构象互转换,其中鞍点的位置很重要。我们还描述了对我们原始的LMOD过程(l-LMOD)的改进,并讨论了其对一个困难的构象搜索问题的效用,即找到C_(39)H_(80)的全局最小能量构象。对于此搜索,l-LMOD与有限的扭转蒙特卡洛运动相结合,能够找到迄今报道的最低能量结构,并且明显优于单纯的扭转蒙特卡洛和基于遗传算法的搜索。此外,我们还证明了将L-LMOD与配体的随机翻译/旋转相结合的实用性,可解决将柔性配体对接至包含对接于9-deaza-鸟嘌呤的抑制剂的系统上的柔性蛋白结合位点的极其困难的问题。 PNP的灵活招标网站。

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