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基于分子结构单纯形表示法的分层定量构效关系技术。

Hierarchical QSAR technology based on the Simplex representation of molecular structure.

作者信息

Kuz'min V E, Artemenko A G, Muratov E N

机构信息

A.V. Bogatsky Physico-Chemical Institute, National Academy of Sciences of Ukraine, Lustdorfskaya doroga 86, Odessa, 65080, Ukraine.

出版信息

J Comput Aided Mol Des. 2008 Jun-Jul;22(6-7):403-21. doi: 10.1007/s10822-008-9179-6. Epub 2008 Feb 6.

Abstract

This article is about the hierarchical quantitative structure-activity relationship technology (HiT QSAR) based on the Simplex representation of molecular structure (SiRMS) and its application for different QSAR/QSP(property)R tasks. The essence of this technology is a sequential solution (with the use of the information obtained on the previous steps) to the QSAR problem by the series of enhanced models of molecular structure description [from one dimensional (1D) to four dimensional (4D)]. It is a system of permanently improved solutions. In the SiRMS approach, every molecule is represented as a system of different simplexes (tetratomic fragments with fixed composition, structure, chirality and symmetry). The level of simplex descriptors detailing increases consecutively from the 1D to 4D representation of the molecular structure. The advantages of the approach reported here are the absence of "molecular alignment" problems, consideration of different physical-chemical properties of atoms (e.g. charge, lipophilicity, etc.), the high adequacy and good interpretability of obtained models and clear ways for molecular design. The efficiency of the HiT QSAR approach is demonstrated by comparing it with the most popular modern QSAR approaches on two representative examination sets. The examples of successful application of the HiT QSAR for various QSAR/QSPR investigations on the different levels (1D-4D) of the molecular structure description are also highlighted. The reliability of developed QSAR models as predictive virtual screening tools and their ability to serve as the base of directed drug design was validated by subsequent synthetic and biological experiments, among others. The HiT QSAR is realized as a complex of computer programs known as HIT QSAR: software that also includes a powerful statistical block and a number of useful utilities.

摘要

本文介绍了基于分子结构单纯形表示法(SiRMS)的分层定量构效关系技术(HiT QSAR)及其在不同QSAR/QSP(性质)R任务中的应用。该技术的本质是通过一系列增强的分子结构描述模型(从一维(1D)到四维(4D)),依次解决(利用在前一步骤获得的信息)QSAR问题。它是一个不断改进的解决方案系统。在SiRMS方法中,每个分子都表示为不同单纯形(具有固定组成、结构、手性和对称性的四原子片段)的系统。单纯形描述符的详细程度从分子结构的1D表示到4D表示依次增加。本文报道的方法的优点是不存在“分子排列”问题,考虑了原子的不同物理化学性质(如电荷、亲脂性等),所获得模型的高度充分性和良好的可解释性,以及分子设计的清晰方法。通过将HiT QSAR方法与两个代表性测试集上最流行的现代QSAR方法进行比较,证明了其效率。还强调了HiT QSAR在分子结构描述的不同层次(1D - 4D)上用于各种QSAR/QSPR研究的成功应用实例。后续的合成和生物学实验等验证了所开发的QSAR模型作为预测性虚拟筛选工具的可靠性及其作为定向药物设计基础的能力。HiT QSAR实现为一个称为HIT QSAR的计算机程序复合体:该软件还包括一个强大的统计模块和许多有用的实用工具。

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