Deterministic pharmacophore detection via multiple flexible alignment of drug-like molecules

被引:0
|
作者
Inbar, Yuval [1 ]
Schneidman-Duhovny, Dina [1 ]
Dror, Oranit [1 ]
Nussinov, Ruth [2 ,3 ]
Wolfson, Haim J. [1 ]
机构
[1] Tel Aviv Univ, Sch Comp Sci, Raymond & Beverly Sackler Fac Exact Sci, IL-69978 Tel Aviv, Israel
[2] Tel Aviv Univ, Sackler Inst Mol Med, Sackler Fac Med, Tel Aviv, Israel
[3] NCI Frederick, SAIC Frederick Inc, Ctr Canc Res Nanobiol, Frederick, MD USA
来源
RESEARCH IN COMPUTATIONAL MOLECULAR BIOLOGY, PROCEEDINGS | 2007年 / 4453卷
基金
以色列科学基金会; 美国国家卫生研究院;
关键词
computer-aided drug design (CADD); rational drug discovery; 3D molecular similarity; 3D molecular superposition;
D O I
暂无
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
We present a novel highly efficient method for the detection of a pharmacophore from a set of ligands/drugs that interact with a target receptor. A pharmacophore is a spatial arrangement of physicochemical features in a ligand that is responsible for the interaction with a specific receptor. In the absence of a known 3D receptor structure, a pharmacophore can be identified from a multiple structural alignment of the ligand molecules. The key advantages of the presented algorithm are: (a) its ability to multiply align flexible ligands in a deterministic manner, (b) its ability to focus on subsets of the input ligands, which may share a large common substructure, resulting in the detection of both outlier molecules and alternative binding modes, and (c) its computational efficiency, which allows to detect pharmacophores shared by a large number of molecules on a standard PC. The algorithm was extensively tested on a dataset of almost 80 ligands acting on 12 different receptors. The results, which were achieved using a standard default parameter set, were consistent with reference pharmacophores that were derived from the bound ligand-receptor complexes. The pharmacophores detected by the algorithm are expected to be a key component in the discovery of new leads by screening large drug-like molecule databases.
引用
收藏
页码:412 / +
页数:3
相关论文
共 50 条
  • [1] Deterministic pharmacophore detection via multiple flexible alignment of drug-like molecules
    Schneidman-Duhovny, Dina
    Dror, Oranit
    Inbar, Yuval
    Nussinov, Ruth
    Wolfson, Haim J.
    JOURNAL OF COMPUTATIONAL BIOLOGY, 2008, 15 (07) : 737 - 754
  • [2] Tautomerization approach for drug-like molecules
    Shelley, John C.
    Sullivan, Arron P.
    Calkins, David
    Greenwood, Jeremy R.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2010, 240
  • [3] Recognizing molecules with drug-like properties
    Walters, WP
    Murcko, A
    Murcko, MA
    CURRENT OPINION IN CHEMICAL BIOLOGY, 1999, 3 (04) : 384 - 387
  • [4] Flexible docking of proteins and "drug-like" ligands
    Tang, HX
    Ye, YZ
    Ding, DF
    ACTA BIOCHIMICA ET BIOPHYSICA SINICA, 1998, 30 (06): : 623 - 630
  • [5] New Synthetic Methodology for Drug-like Molecules
    Barker, Graeme
    Rapposelli, Simona
    MOLECULES, 2023, 28 (15):
  • [6] Screening molecules for their drug-like index.
    Rayan, A
    Scaiewicz, A
    Geva-Dotan, I
    Barasch, D
    Goldblum, A
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2004, 228 : U358 - U358
  • [7] Conformational Sampling and Energetics of Drug-Like Molecules
    Foloppe, Nicolas
    Chen, I-Jen
    CURRENT MEDICINAL CHEMISTRY, 2009, 16 (26) : 3381 - 3413
  • [8] Predicting the Crystallization Propensity of Drug-Like Molecules
    Hancock, Bruno C.
    JOURNAL OF PHARMACEUTICAL SCIENCES, 2017, 106 (01) : 28 - 30
  • [9] ReSCoSS: a flexible quantum chemistry workflow identifying relevant solution conformers of drug-like molecules
    Udvarhelyi, Aniko
    Rodde, Stephane
    Wilcken, Rainer
    JOURNAL OF COMPUTER-AIDED MOLECULAR DESIGN, 2021, 35 (04) : 399 - 415
  • [10] ReSCoSS: a flexible quantum chemistry workflow identifying relevant solution conformers of drug-like molecules
    Anikó Udvarhelyi
    Stephane Rodde
    Rainer Wilcken
    Journal of Computer-Aided Molecular Design, 2021, 35 : 399 - 415