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Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells

BACKGROUND: Inhibition of the COP9 signalosome (CSN) associated kinases CK2 and PKD by curcumin causes stabilization of the tumor suppressor p53. It has been shown that curcumin induces tumor cell death and apoptosis. Curcumin and emodin block the CSN-directed c-Jun signaling pathway, which results...

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Autores principales: Füllbeck, Melanie, Huang, Xiaohua, Dumdey, Renate, Frommel, Cornelius, Dubiel, Wolfgang, Preissner, Robert
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1198225/
https://www.ncbi.nlm.nih.gov/pubmed/16083495
http://dx.doi.org/10.1186/1471-2407-5-97
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author Füllbeck, Melanie
Huang, Xiaohua
Dumdey, Renate
Frommel, Cornelius
Dubiel, Wolfgang
Preissner, Robert
author_facet Füllbeck, Melanie
Huang, Xiaohua
Dumdey, Renate
Frommel, Cornelius
Dubiel, Wolfgang
Preissner, Robert
author_sort Füllbeck, Melanie
collection PubMed
description BACKGROUND: Inhibition of the COP9 signalosome (CSN) associated kinases CK2 and PKD by curcumin causes stabilization of the tumor suppressor p53. It has been shown that curcumin induces tumor cell death and apoptosis. Curcumin and emodin block the CSN-directed c-Jun signaling pathway, which results in diminished c-Jun steady state levels in HeLa cells. The aim of this work was to search for new CSN kinase inhibitors analogue to curcumin and emodin by means of an in silico screening method. METHODS: Here we present a novel method to identify efficient inhibitors of CSN-associated kinases. Using curcumin and emodin as lead structures an in silico screening with our in-house database containing more than 10(6 )structures was carried out. Thirty-five compounds were identified and further evaluated by the Lipinski's rule-of-five. Two groups of compounds can be clearly discriminated according to their structures: the curcumin-group and the emodin-group. The compounds were evaluated in in vitro kinase assays and in cell culture experiments. RESULTS: The data revealed 3 compounds of the curcumin-group (e.g. piceatannol) and 4 of the emodin-group (e.g. anthrachinone) as potent inhibitors of CSN-associated kinases. Identified agents increased p53 levels and induced apoptosis in tumor cells as determined by annexin V-FITC binding, DNA fragmentation and caspase activity assays. CONCLUSION: Our data demonstrate that the new in silico screening method is highly efficient for identifying potential anti-tumor drugs.
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spelling pubmed-11982252005-09-03 Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells Füllbeck, Melanie Huang, Xiaohua Dumdey, Renate Frommel, Cornelius Dubiel, Wolfgang Preissner, Robert BMC Cancer Research Article BACKGROUND: Inhibition of the COP9 signalosome (CSN) associated kinases CK2 and PKD by curcumin causes stabilization of the tumor suppressor p53. It has been shown that curcumin induces tumor cell death and apoptosis. Curcumin and emodin block the CSN-directed c-Jun signaling pathway, which results in diminished c-Jun steady state levels in HeLa cells. The aim of this work was to search for new CSN kinase inhibitors analogue to curcumin and emodin by means of an in silico screening method. METHODS: Here we present a novel method to identify efficient inhibitors of CSN-associated kinases. Using curcumin and emodin as lead structures an in silico screening with our in-house database containing more than 10(6 )structures was carried out. Thirty-five compounds were identified and further evaluated by the Lipinski's rule-of-five. Two groups of compounds can be clearly discriminated according to their structures: the curcumin-group and the emodin-group. The compounds were evaluated in in vitro kinase assays and in cell culture experiments. RESULTS: The data revealed 3 compounds of the curcumin-group (e.g. piceatannol) and 4 of the emodin-group (e.g. anthrachinone) as potent inhibitors of CSN-associated kinases. Identified agents increased p53 levels and induced apoptosis in tumor cells as determined by annexin V-FITC binding, DNA fragmentation and caspase activity assays. CONCLUSION: Our data demonstrate that the new in silico screening method is highly efficient for identifying potential anti-tumor drugs. BioMed Central 2005-08-05 /pmc/articles/PMC1198225/ /pubmed/16083495 http://dx.doi.org/10.1186/1471-2407-5-97 Text en Copyright © 2005 Fuellbeck et al; licensee BioMed Central Ltd.
spellingShingle Research Article
Füllbeck, Melanie
Huang, Xiaohua
Dumdey, Renate
Frommel, Cornelius
Dubiel, Wolfgang
Preissner, Robert
Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells
title Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells
title_full Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells
title_fullStr Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells
title_full_unstemmed Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells
title_short Novel curcumin- and emodin-related compounds identified by in silico 2D/3D conformer screening induce apoptosis in tumor cells
title_sort novel curcumin- and emodin-related compounds identified by in silico 2d/3d conformer screening induce apoptosis in tumor cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1198225/
https://www.ncbi.nlm.nih.gov/pubmed/16083495
http://dx.doi.org/10.1186/1471-2407-5-97
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