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PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS

[Image: see text] Significant resources in early drug discovery are spent unknowingly pursuing artifacts and promiscuous bioactive compounds, while understanding the chemical basis for these adverse behaviors often goes unexplored in pursuit of lead compounds. Nearly all the hits from our recent sul...

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Autores principales: Dahlin, Jayme L., Nissink, J. Willem M., Strasser, Jessica M., Francis, Subhashree, Higgins, LeeAnn, Zhou, Hui, Zhang, Zhiguo, Walters, Michael A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2015
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4360378/
https://www.ncbi.nlm.nih.gov/pubmed/25634295
http://dx.doi.org/10.1021/jm5019093
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author Dahlin, Jayme L.
Nissink, J. Willem M.
Strasser, Jessica M.
Francis, Subhashree
Higgins, LeeAnn
Zhou, Hui
Zhang, Zhiguo
Walters, Michael A.
author_facet Dahlin, Jayme L.
Nissink, J. Willem M.
Strasser, Jessica M.
Francis, Subhashree
Higgins, LeeAnn
Zhou, Hui
Zhang, Zhiguo
Walters, Michael A.
author_sort Dahlin, Jayme L.
collection PubMed
description [Image: see text] Significant resources in early drug discovery are spent unknowingly pursuing artifacts and promiscuous bioactive compounds, while understanding the chemical basis for these adverse behaviors often goes unexplored in pursuit of lead compounds. Nearly all the hits from our recent sulfhydryl-scavenging high-throughput screen (HTS) targeting the histone acetyltransferase Rtt109 were such compounds. Herein, we characterize the chemical basis for assay interference and promiscuous enzymatic inhibition for several prominent chemotypes identified by this HTS, including some pan-assay interference compounds (PAINS). Protein mass spectrometry and ALARM NMR confirmed these compounds react covalently with cysteines on multiple proteins. Unfortunately, compounds containing these chemotypes have been published as screening actives in reputable journals and even touted as chemical probes or preclinical candidates. Our detailed characterization and identification of such thiol-reactive chemotypes should accelerate triage of nuisance compounds, guide screening library design, and prevent follow-up on undesirable chemical matter.
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spelling pubmed-43603782015-03-30 PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS Dahlin, Jayme L. Nissink, J. Willem M. Strasser, Jessica M. Francis, Subhashree Higgins, LeeAnn Zhou, Hui Zhang, Zhiguo Walters, Michael A. J Med Chem [Image: see text] Significant resources in early drug discovery are spent unknowingly pursuing artifacts and promiscuous bioactive compounds, while understanding the chemical basis for these adverse behaviors often goes unexplored in pursuit of lead compounds. Nearly all the hits from our recent sulfhydryl-scavenging high-throughput screen (HTS) targeting the histone acetyltransferase Rtt109 were such compounds. Herein, we characterize the chemical basis for assay interference and promiscuous enzymatic inhibition for several prominent chemotypes identified by this HTS, including some pan-assay interference compounds (PAINS). Protein mass spectrometry and ALARM NMR confirmed these compounds react covalently with cysteines on multiple proteins. Unfortunately, compounds containing these chemotypes have been published as screening actives in reputable journals and even touted as chemical probes or preclinical candidates. Our detailed characterization and identification of such thiol-reactive chemotypes should accelerate triage of nuisance compounds, guide screening library design, and prevent follow-up on undesirable chemical matter. American Chemical Society 2015-01-29 2015-03-12 /pmc/articles/PMC4360378/ /pubmed/25634295 http://dx.doi.org/10.1021/jm5019093 Text en Copyright © 2015 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Dahlin, Jayme L.
Nissink, J. Willem M.
Strasser, Jessica M.
Francis, Subhashree
Higgins, LeeAnn
Zhou, Hui
Zhang, Zhiguo
Walters, Michael A.
PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS
title PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS
title_full PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS
title_fullStr PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS
title_full_unstemmed PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS
title_short PAINS in the Assay: Chemical Mechanisms of Assay Interference and Promiscuous Enzymatic Inhibition Observed during a Sulfhydryl-Scavenging HTS
title_sort pains in the assay: chemical mechanisms of assay interference and promiscuous enzymatic inhibition observed during a sulfhydryl-scavenging hts
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4360378/
https://www.ncbi.nlm.nih.gov/pubmed/25634295
http://dx.doi.org/10.1021/jm5019093
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