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Multiple Minima Hypersurfaces Procedures for Biomimetic Ligands Screening

机译:用于仿生配体筛选的多个MINOMA Hypsursurfaces程序

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In this work the interaction of the pesticide carbaryl with two groups of biomimetic ligands, peptides and MIPs was screened by multiple minima hypersurfaces (MMH) procedures, through the AMI semiempirical method. Data related to the properties of the molecular association of the complex biomimetic ligand-pesticide were obtained and compared with another molecular modeling algorithm named Leapfrog, as included in the Sybyl software package, and experimental results from the literature, remarking good correlation between them. All important MMH program parameters (cells number, box size, conformers) were studied and optimized with the aim of getting the minimum computation time without losing the correlation with experimental data. The data demonstrated that MMH approach can be used as a fast biomimetic ligand screening tool for MIPs. In the case of peptides the computation time was not comparable with the molecular dynamics methods conventionally used for this approach.
机译:在这项工作中,通过AMI半透射法通过多个MINOMIRICATE方法筛选杀虫剂碳酸与两组生物摩擦配体,肽和MIPS的相互作用。获得与复合生物摩擦配体 - 农药的分子缔合的性质有关的数据,并与名为LeapFrog的另一种分子建模算法进行比较,如Sybyl软件包中所包含的,以及文献中的实验结果,仔细说明它们之间的良好相关性。研究并优化了所有重要的MMH节目参数(单元号,框大小,符合子),目的是获得最小计算时间而不导致与实验数据相关的相关性。数据表明MMH方法可以用作MIPS的快速生物仿生配体筛选工具。在肽的情况下,计算时间与常规用于这种方法的分子动力学方法没有比较。

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