Matches in SemOpenAlex for { <https://semopenalex.org/work/W2978778857> ?p ?o ?g. }
- W2978778857 endingPage "86" @default.
- W2978778857 startingPage "76" @default.
- W2978778857 abstract "Abstract Recent years have seen progress in druggability simulations, that is, molecular dynamics simulations of target proteins in solutions containing drug‐like probe molecules to characterize their drug‐binding abilities, if any. An important consecutive step is to analyze the trajectories to construct pharmacophore models (PMs) to use for virtual screening of libraries of small molecules. While considerable success has been observed in this type of computer‐aided drug discovery, a systematic tool encompassing multiple steps from druggability simulations to pharmacophore modeling, to identifying hits by virtual screening of libraries of compounds, has been lacking. We address this need here by developing a new tool, Pharmmaker, building on the DruGUI module of our ProDy application programming interface. Pharmmaker is composed of a suite of steps: (Step 1) identification of high affinity residues for each probe molecule type; (Step 2) selecting high affinity residues and hot spots in the vicinity of sites identified by DruGUI; (Step 3) ranking of the interactions between high affinity residues and specific probes; (Step 4) obtaining probe binding poses and corresponding protein conformations by collecting top‐ranked snapshots; and (Step 5) using those snapshots for constructing PMs. The PMs are then used as filters for identifying hits in structure‐based virtual screening. Pharmmaker, accessible online at http://prody.csb.pitt.edu/pharmmaker , can be used in conjunction with other tools available in ProDy ." @default.
- W2978778857 created "2019-10-10" @default.
- W2978778857 creator A5008880759 @default.
- W2978778857 creator A5076809288 @default.
- W2978778857 creator A5081814496 @default.
- W2978778857 creator A5086786938 @default.
- W2978778857 date "2019-12-04" @default.
- W2978778857 modified "2023-10-16" @default.
- W2978778857 title "Pharmmaker: Pharmacophore modeling and hit identification based on druggability simulations" @default.
- W2978778857 cites W1722748669 @default.
- W2978778857 cites W1757990252 @default.
- W2978778857 cites W1905532389 @default.
- W2978778857 cites W1922786159 @default.
- W2978778857 cites W1960357661 @default.
- W2978778857 cites W1965798600 @default.
- W2978778857 cites W1972146039 @default.
- W2978778857 cites W1976499671 @default.
- W2978778857 cites W1979641354 @default.
- W2978778857 cites W1980413249 @default.
- W2978778857 cites W1992041755 @default.
- W2978778857 cites W1994921798 @default.
- W2978778857 cites W1995206879 @default.
- W2978778857 cites W1999491936 @default.
- W2978778857 cites W2002063031 @default.
- W2978778857 cites W2003122257 @default.
- W2978778857 cites W2003710118 @default.
- W2978778857 cites W2007112624 @default.
- W2978778857 cites W2009212164 @default.
- W2978778857 cites W2019048640 @default.
- W2978778857 cites W2028629022 @default.
- W2978778857 cites W2029667189 @default.
- W2978778857 cites W2031390939 @default.
- W2978778857 cites W2036677047 @default.
- W2978778857 cites W2037852973 @default.
- W2978778857 cites W2039047003 @default.
- W2978778857 cites W2039709045 @default.
- W2978778857 cites W2044997440 @default.
- W2978778857 cites W2050333027 @default.
- W2978778857 cites W2057846043 @default.
- W2978778857 cites W2058978311 @default.
- W2978778857 cites W2071798348 @default.
- W2978778857 cites W2073746700 @default.
- W2978778857 cites W2073944525 @default.
- W2978778857 cites W2076497939 @default.
- W2978778857 cites W2080653934 @default.
- W2978778857 cites W2083431520 @default.
- W2978778857 cites W2086385790 @default.
- W2978778857 cites W2089365361 @default.
- W2978778857 cites W2099001405 @default.
- W2978778857 cites W2103388612 @default.
- W2978778857 cites W2111886211 @default.
- W2978778857 cites W2114563838 @default.
- W2978778857 cites W2123681603 @default.
- W2978778857 cites W2126389097 @default.
- W2978778857 cites W2126684146 @default.
- W2978778857 cites W2134967712 @default.
- W2978778857 cites W2139950821 @default.
- W2978778857 cites W2150981663 @default.
- W2978778857 cites W2153928331 @default.
- W2978778857 cites W2166674455 @default.
- W2978778857 cites W2167547775 @default.
- W2978778857 cites W2167811233 @default.
- W2978778857 cites W2208203352 @default.
- W2978778857 cites W2218941725 @default.
- W2978778857 cites W2221330345 @default.
- W2978778857 cites W2328088698 @default.
- W2978778857 cites W2336883206 @default.
- W2978778857 cites W2440786981 @default.
- W2978778857 cites W2512708954 @default.
- W2978778857 cites W2554099577 @default.
- W2978778857 cites W2558999090 @default.
- W2978778857 cites W2611393411 @default.
- W2978778857 cites W2731059737 @default.
- W2978778857 cites W2738417757 @default.
- W2978778857 cites W2777007947 @default.
- W2978778857 cites W2779847048 @default.
- W2978778857 cites W2799327292 @default.
- W2978778857 cites W2801991413 @default.
- W2978778857 cites W2808015727 @default.
- W2978778857 cites W2809840241 @default.
- W2978778857 cites W2898552410 @default.
- W2978778857 cites W2905356589 @default.
- W2978778857 cites W2906908462 @default.
- W2978778857 cites W2911658570 @default.
- W2978778857 cites W2939998722 @default.
- W2978778857 cites W2941542033 @default.
- W2978778857 cites W4232872069 @default.
- W2978778857 doi "https://doi.org/10.1002/pro.3732" @default.
- W2978778857 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6933858" @default.
- W2978778857 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/31576621" @default.
- W2978778857 hasPublicationYear "2019" @default.
- W2978778857 type Work @default.
- W2978778857 sameAs 2978778857 @default.
- W2978778857 citedByCount "16" @default.
- W2978778857 countsByYear W29787788572020 @default.
- W2978778857 countsByYear W29787788572021 @default.
- W2978778857 countsByYear W29787788572022 @default.
- W2978778857 countsByYear W29787788572023 @default.