Cargando…

A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology

Conventional drug design embraces the “one gene, one drug, one disease” philosophy. Polypharmacology, which focuses on multi-target drugs, has emerged as a new paradigm in drug discovery. The rational design of drugs that act via polypharmacological mechanisms can produce compounds that exhibit incr...

Descripción completa

Detalles Bibliográficos
Autores principales: Durrant, Jacob D., Amaro, Rommie E., Xie, Lei, Urbaniak, Michael D., Ferguson, Michael A. J., Haapalainen, Antti, Chen, Zhijun, Di Guilmi, Anne Marie, Wunder, Frank, Bourne, Philip E., McCammon, J. Andrew
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2799658/
https://www.ncbi.nlm.nih.gov/pubmed/20098496
http://dx.doi.org/10.1371/journal.pcbi.1000648
_version_ 1782175811922558976
author Durrant, Jacob D.
Amaro, Rommie E.
Xie, Lei
Urbaniak, Michael D.
Ferguson, Michael A. J.
Haapalainen, Antti
Chen, Zhijun
Di Guilmi, Anne Marie
Wunder, Frank
Bourne, Philip E.
McCammon, J. Andrew
author_facet Durrant, Jacob D.
Amaro, Rommie E.
Xie, Lei
Urbaniak, Michael D.
Ferguson, Michael A. J.
Haapalainen, Antti
Chen, Zhijun
Di Guilmi, Anne Marie
Wunder, Frank
Bourne, Philip E.
McCammon, J. Andrew
author_sort Durrant, Jacob D.
collection PubMed
description Conventional drug design embraces the “one gene, one drug, one disease” philosophy. Polypharmacology, which focuses on multi-target drugs, has emerged as a new paradigm in drug discovery. The rational design of drugs that act via polypharmacological mechanisms can produce compounds that exhibit increased therapeutic potency and against which resistance is less likely to develop. Additionally, identifying multiple protein targets is also critical for side-effect prediction. One third of potential therapeutic compounds fail in clinical trials or are later removed from the market due to unacceptable side effects often caused by off-target binding. In the current work, we introduce a multidimensional strategy for the identification of secondary targets of known small-molecule inhibitors in the absence of global structural and sequence homology with the primary target protein. To demonstrate the utility of the strategy, we identify several targets of 4,5-dihydroxy-3-(1-naphthyldiazenyl)-2,7-naphthalenedisulfonic acid, a known micromolar inhibitor of Trypanosoma brucei RNA editing ligase 1. As it is capable of identifying potential secondary targets, the strategy described here may play a useful role in future efforts to reduce drug side effects and/or to increase polypharmacology.
format Text
id pubmed-2799658
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-27996582010-01-22 A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology Durrant, Jacob D. Amaro, Rommie E. Xie, Lei Urbaniak, Michael D. Ferguson, Michael A. J. Haapalainen, Antti Chen, Zhijun Di Guilmi, Anne Marie Wunder, Frank Bourne, Philip E. McCammon, J. Andrew PLoS Comput Biol Research Article Conventional drug design embraces the “one gene, one drug, one disease” philosophy. Polypharmacology, which focuses on multi-target drugs, has emerged as a new paradigm in drug discovery. The rational design of drugs that act via polypharmacological mechanisms can produce compounds that exhibit increased therapeutic potency and against which resistance is less likely to develop. Additionally, identifying multiple protein targets is also critical for side-effect prediction. One third of potential therapeutic compounds fail in clinical trials or are later removed from the market due to unacceptable side effects often caused by off-target binding. In the current work, we introduce a multidimensional strategy for the identification of secondary targets of known small-molecule inhibitors in the absence of global structural and sequence homology with the primary target protein. To demonstrate the utility of the strategy, we identify several targets of 4,5-dihydroxy-3-(1-naphthyldiazenyl)-2,7-naphthalenedisulfonic acid, a known micromolar inhibitor of Trypanosoma brucei RNA editing ligase 1. As it is capable of identifying potential secondary targets, the strategy described here may play a useful role in future efforts to reduce drug side effects and/or to increase polypharmacology. Public Library of Science 2010-01-22 /pmc/articles/PMC2799658/ /pubmed/20098496 http://dx.doi.org/10.1371/journal.pcbi.1000648 Text en Durrant et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Durrant, Jacob D.
Amaro, Rommie E.
Xie, Lei
Urbaniak, Michael D.
Ferguson, Michael A. J.
Haapalainen, Antti
Chen, Zhijun
Di Guilmi, Anne Marie
Wunder, Frank
Bourne, Philip E.
McCammon, J. Andrew
A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology
title A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology
title_full A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology
title_fullStr A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology
title_full_unstemmed A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology
title_short A Multidimensional Strategy to Detect Polypharmacological Targets in the Absence of Structural and Sequence Homology
title_sort multidimensional strategy to detect polypharmacological targets in the absence of structural and sequence homology
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2799658/
https://www.ncbi.nlm.nih.gov/pubmed/20098496
http://dx.doi.org/10.1371/journal.pcbi.1000648
work_keys_str_mv AT durrantjacobd amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT amarorommiee amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT xielei amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT urbaniakmichaeld amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT fergusonmichaelaj amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT haapalainenantti amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT chenzhijun amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT diguilmiannemarie amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT wunderfrank amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT bournephilipe amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT mccammonjandrew amultidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT durrantjacobd multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT amarorommiee multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT xielei multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT urbaniakmichaeld multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT fergusonmichaelaj multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT haapalainenantti multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT chenzhijun multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT diguilmiannemarie multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT wunderfrank multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT bournephilipe multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology
AT mccammonjandrew multidimensionalstrategytodetectpolypharmacologicaltargetsintheabsenceofstructuralandsequencehomology