TY - JOUR
T1 - DockingApp: a user friendly interface for facilitated docking simulations with AutoDock Vina
AU - Di, Muzio E.
AU - Toti, Daniele
AU - Polticelli, F.
PY - 2017
Y1 - 2017
N2 - Molecular docking is a powerful technique that helps uncover the structural and energetic bases of the interaction between macromolecules and substrates, endogenous and exogenous ligands, and inhibitors. Moreover, this technique plays a pivotal role in accelerating the screening of large libraries of compounds for drug development purposes. The need to promote community-driven drug development efforts, especially as far as neglected diseases are concerned, calls for user-friendly tools to allow non-expert users to exploit the full potential of molecular docking. Along this path, here is described the implementation of DockingApp, a freely available, extremely user-friendly, platform-independent application for performing docking simulations and virtual screening tasks using AutoDock Vina. DockingApp sports an intuitive graphical user interface which greatly facilitates both the input phase and the analysis of the results, which can be visualized in graphical form using the embedded JMol applet. The application comes with the DrugBank set of more than 1400 ready-to-dock, FDA-approved drugs, to facilitate virtual screening and drug repurposing initiatives. Furthermore, other databases of compounds such as ZINC, available also in AutoDock format, can be readily and easily plugged in.
AB - Molecular docking is a powerful technique that helps uncover the structural and energetic bases of the interaction between macromolecules and substrates, endogenous and exogenous ligands, and inhibitors. Moreover, this technique plays a pivotal role in accelerating the screening of large libraries of compounds for drug development purposes. The need to promote community-driven drug development efforts, especially as far as neglected diseases are concerned, calls for user-friendly tools to allow non-expert users to exploit the full potential of molecular docking. Along this path, here is described the implementation of DockingApp, a freely available, extremely user-friendly, platform-independent application for performing docking simulations and virtual screening tasks using AutoDock Vina. DockingApp sports an intuitive graphical user interface which greatly facilitates both the input phase and the analysis of the results, which can be visualized in graphical form using the embedded JMol applet. The application comes with the DrugBank set of more than 1400 ready-to-dock, FDA-approved drugs, to facilitate virtual screening and drug repurposing initiatives. Furthermore, other databases of compounds such as ZINC, available also in AutoDock format, can be readily and easily plugged in.
KW - AutoDock Vina
KW - Drug Design
KW - Drug repurposing
KW - Graphic interface
KW - Ligands
KW - Macromolecular Substances
KW - Molecular Docking Simulation
KW - Molecular docking
KW - Software
KW - User-Computer Interface
KW - Virtual screening
KW - Wrapper
KW - AutoDock Vina
KW - Drug Design
KW - Drug repurposing
KW - Graphic interface
KW - Ligands
KW - Macromolecular Substances
KW - Molecular Docking Simulation
KW - Molecular docking
KW - Software
KW - User-Computer Interface
KW - Virtual screening
KW - Wrapper
UR - https://publicatt.unicatt.it/handle/10807/163205
UR - https://www.scopus.com/inward/citedby.uri?partnerID=HzOxMe3b&scp=85008449901&origin=inward
UR - https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85008449901&origin=inward
U2 - 10.1007/s10822-016-0006-1
DO - 10.1007/s10822-016-0006-1
M3 - Article
SN - 0920-654X
VL - 31
SP - 213
EP - 218
JO - Journal of Computer-Aided Molecular Design
JF - Journal of Computer-Aided Molecular Design
IS - 2
ER -