TY - JOUR
T1 - ePharmer
T2 - An integrated and graphical software for pharmacophore-based virtual screening
AU - Mao, Yuxia
AU - Li, Shiliang
AU - Gong, Bojie
AU - Lai, Luhua
AU - He, Gaoqi
AU - Li, Honglin
N1 - Publisher Copyright:
© 2021 Wiley Periodicals LLC.
PY - 2021/11/15
Y1 - 2021/11/15
N2 - Pharmacophore-based virtual screening (VS) has emerged as an efficient computer-aided drug design technique when appraising multiple ligands with similar structures or targets with unknown crystal structures. Current pharmacophore modeling and analysis software suffers from inadequate integration of mainstream methods and insufficient user-friendly program interface. In this study, we propose a stand-alone, integrated, graphical software for pharmacophore-based VS, termed ePharmer. Both ligand-based and structure-based pharmacophore generation methods were integrated into a compact architecture. Fine-grained modules were carefully organized into the computing, integration, and visualization layers. Graphical design covered the global user interface and specific user operations including editing, evaluation, and task management. Metabolites prediction analysis with the chosen VS result is provided for preselection of wet experiments. Moreover, the underlying computing units largely adopted the preliminary work of our research team. The presented software is currently in client use and will be released for both professional and nonexpert users. Experimental results verified the favorable computing capability, user convenience, and case performance of the proposed software.
AB - Pharmacophore-based virtual screening (VS) has emerged as an efficient computer-aided drug design technique when appraising multiple ligands with similar structures or targets with unknown crystal structures. Current pharmacophore modeling and analysis software suffers from inadequate integration of mainstream methods and insufficient user-friendly program interface. In this study, we propose a stand-alone, integrated, graphical software for pharmacophore-based VS, termed ePharmer. Both ligand-based and structure-based pharmacophore generation methods were integrated into a compact architecture. Fine-grained modules were carefully organized into the computing, integration, and visualization layers. Graphical design covered the global user interface and specific user operations including editing, evaluation, and task management. Metabolites prediction analysis with the chosen VS result is provided for preselection of wet experiments. Moreover, the underlying computing units largely adopted the preliminary work of our research team. The presented software is currently in client use and will be released for both professional and nonexpert users. Experimental results verified the favorable computing capability, user convenience, and case performance of the proposed software.
KW - graphical CADD software
KW - ligand-based pharmacophore modeling
KW - stand-alone computation software
KW - structure-based pharmacophore modeling
KW - virtual screening
UR - https://www.scopus.com/pages/publications/85112839217
U2 - 10.1002/jcc.26743
DO - 10.1002/jcc.26743
M3 - 文章
C2 - 34410013
AN - SCOPUS:85112839217
SN - 0192-8651
VL - 42
SP - 2181
EP - 2195
JO - Journal of Computational Chemistry
JF - Journal of Computational Chemistry
IS - 30
ER -