Laboratorio Virtual NANOCOSMOS, Departamento de Medio Ambiente y Energía, Centro de Investigación en Materiales Avanzados, Chihuahua, Chih 31136, Mexico.
Departament de Química, Universitat de les Illes Balears, E-07122 Palma de Malllorca, Spain.
Molecules. 2020 Sep 11;25(18):4158. doi: 10.3390/molecules25184158.
A methodology based on the concepts that arise from Density Functional Theory named Conceptual Density Functional Theory (CDFT) was chosen for the calculation of some global and local reactivity descriptors of the Discodermins A-H family of marine peptides through the consideration of the KID (Koopmans in DFT) technique that was successfully used in previous studies of this kind of molecular systems. The determination of active sites of the studied molecules for different kinds of reactivities was achieved by resorting to some CDFT-based descriptors like the Fukui functions as well as the Parr functions derived from Molecular Electron Density Theory (MEDT). A few properties identified with their ability to behave as a drug and the bioactivity of the peptides considered in this examination were acquired by depending on a homology model by studying the correlation with the known bioactivity of related molecules in their interaction with various biological receptors. With the further object of analyzing their bioactivity, some parameters of usefulness for future QSAR studies, their predicted biological targets, and the ADME (Absorption, Distribution, Metabolism, and Excretion) parameters related to the Discodermins A-H pharmacokinetics are also reported.
选择了一种基于密度泛函理论概念的方法,即概念密度泛函理论(CDFT),用于通过考虑 KID(DFT 中的 Koopmans)技术来计算 Discodermins A-H 海洋肽家族的一些全局和局部反应性描述符,该技术已成功用于此类分子系统的先前研究中。通过使用一些基于 CDFT 的描述符,如福井函数和分子电子密度理论(MEDT)导出的 Parr 函数,确定了研究分子的不同反应活性的活性位点。通过研究与已知生物活性相关分子相互作用的各种生物受体的相关性,依赖同源模型来确定与药物能力相关的一些性质和肽的生物活性。为了进一步分析它们的生物活性,还报告了一些对未来 QSAR 研究有用的参数、它们的预测生物靶标以及与 Discodermins A-H 药代动力学相关的 ADME(吸收、分布、代谢和排泄)参数。