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Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction

[Image: see text] Ten protein kinase C (PKC) isozymes play divergent roles in signal transduction. Because of sequence similarities, it is particularly difficult to generate isozyme-selective small molecule inhibitors. In order to identify such a selective binder, we derived a pharmacophore model fr...

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Autores principales: Rechfeld, Florian, Gruber, Peter, Kirchmair, Johannes, Boehler, Markus, Hauser, Nina, Hechenberger, Georg, Garczarczyk, Dorota, Lapa, Gennady B., Preobrazhenskaya, Maria N., Goekjian, Peter, Langer, Thierry, Hofmann, Johann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4001449/
https://www.ncbi.nlm.nih.gov/pubmed/24712764
http://dx.doi.org/10.1021/jm401605c
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author Rechfeld, Florian
Gruber, Peter
Kirchmair, Johannes
Boehler, Markus
Hauser, Nina
Hechenberger, Georg
Garczarczyk, Dorota
Lapa, Gennady B.
Preobrazhenskaya, Maria N.
Goekjian, Peter
Langer, Thierry
Hofmann, Johann
author_facet Rechfeld, Florian
Gruber, Peter
Kirchmair, Johannes
Boehler, Markus
Hauser, Nina
Hechenberger, Georg
Garczarczyk, Dorota
Lapa, Gennady B.
Preobrazhenskaya, Maria N.
Goekjian, Peter
Langer, Thierry
Hofmann, Johann
author_sort Rechfeld, Florian
collection PubMed
description [Image: see text] Ten protein kinase C (PKC) isozymes play divergent roles in signal transduction. Because of sequence similarities, it is particularly difficult to generate isozyme-selective small molecule inhibitors. In order to identify such a selective binder, we derived a pharmacophore model from the peptide EAVSLKPT, a fragment of PKCε that inhibits the interaction of PKCε and receptor for activated C-kinase 2 (RACK2). A database of 330 000 molecules was screened in silico, leading to the discovery of a series of thienoquinolines that disrupt the interaction of PKCε with RACK2 in vitro. The most active molecule, N-(3-acetylphenyl)-9-amino-2,3-dihydro-1,4-dioxino[2,3-g]thieno[2,3-b]quinoline-8-carboxamide (8), inhibited this interaction with a measured IC(50) of 5.9 μM and the phosphorylation of downstream target Elk-1 in HeLa cells with an IC(50) of 11.2 μM. Compound 8 interfered with MARCKS phosphorylation and TPA-induced translocation of PKCε (but not that of PKCδ) from the cytosol to the membrane. The compound reduced the migration of HeLa cells into a gap, reduced invasion through a reconstituted basement membrane matrix, and inhibited angiogenesis in a chicken egg assay.
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spelling pubmed-40014492014-04-29 Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction Rechfeld, Florian Gruber, Peter Kirchmair, Johannes Boehler, Markus Hauser, Nina Hechenberger, Georg Garczarczyk, Dorota Lapa, Gennady B. Preobrazhenskaya, Maria N. Goekjian, Peter Langer, Thierry Hofmann, Johann J Med Chem [Image: see text] Ten protein kinase C (PKC) isozymes play divergent roles in signal transduction. Because of sequence similarities, it is particularly difficult to generate isozyme-selective small molecule inhibitors. In order to identify such a selective binder, we derived a pharmacophore model from the peptide EAVSLKPT, a fragment of PKCε that inhibits the interaction of PKCε and receptor for activated C-kinase 2 (RACK2). A database of 330 000 molecules was screened in silico, leading to the discovery of a series of thienoquinolines that disrupt the interaction of PKCε with RACK2 in vitro. The most active molecule, N-(3-acetylphenyl)-9-amino-2,3-dihydro-1,4-dioxino[2,3-g]thieno[2,3-b]quinoline-8-carboxamide (8), inhibited this interaction with a measured IC(50) of 5.9 μM and the phosphorylation of downstream target Elk-1 in HeLa cells with an IC(50) of 11.2 μM. Compound 8 interfered with MARCKS phosphorylation and TPA-induced translocation of PKCε (but not that of PKCδ) from the cytosol to the membrane. The compound reduced the migration of HeLa cells into a gap, reduced invasion through a reconstituted basement membrane matrix, and inhibited angiogenesis in a chicken egg assay. American Chemical Society 2014-04-08 2014-04-24 /pmc/articles/PMC4001449/ /pubmed/24712764 http://dx.doi.org/10.1021/jm401605c Text en Copyright © 2014 American Chemical Society Terms of Use CC-BY (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html)
spellingShingle Rechfeld, Florian
Gruber, Peter
Kirchmair, Johannes
Boehler, Markus
Hauser, Nina
Hechenberger, Georg
Garczarczyk, Dorota
Lapa, Gennady B.
Preobrazhenskaya, Maria N.
Goekjian, Peter
Langer, Thierry
Hofmann, Johann
Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction
title Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction
title_full Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction
title_fullStr Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction
title_full_unstemmed Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction
title_short Thienoquinolines as Novel Disruptors of the PKCε/RACK2 Protein–Protein Interaction
title_sort thienoquinolines as novel disruptors of the pkcε/rack2 protein–protein interaction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4001449/
https://www.ncbi.nlm.nih.gov/pubmed/24712764
http://dx.doi.org/10.1021/jm401605c
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