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Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity
Human Neks are a conserved protein kinase family related to cell cycle progression and cell division and are considered potential drug targets for the treatment of cancer and other pathologies. We screened the activation loop mutant kinases hNek1 and hNek2, wild-type hNek7, and five hNek6 variants i...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272266/ https://www.ncbi.nlm.nih.gov/pubmed/25591119 http://dx.doi.org/10.3390/molecules20011176 |
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author | Moraes, Eduardo Cruz Meirelles, Gabriela Vaz Honorato, Rodrigo Vargas de Souza, Tatiana de Arruda Campos Brasil de Souza, Edmarcia Elisa Murakami, Mario Tyago de Oliveira, Paulo Sergio Lopes Kobarg, Jörg |
author_facet | Moraes, Eduardo Cruz Meirelles, Gabriela Vaz Honorato, Rodrigo Vargas de Souza, Tatiana de Arruda Campos Brasil de Souza, Edmarcia Elisa Murakami, Mario Tyago de Oliveira, Paulo Sergio Lopes Kobarg, Jörg |
author_sort | Moraes, Eduardo Cruz |
collection | PubMed |
description | Human Neks are a conserved protein kinase family related to cell cycle progression and cell division and are considered potential drug targets for the treatment of cancer and other pathologies. We screened the activation loop mutant kinases hNek1 and hNek2, wild-type hNek7, and five hNek6 variants in different activation/phosphorylation statesand compared them against 85 compounds using thermal shift denaturation. We identified three compounds with significant T(m) shifts: JNK Inhibitor II for hNek1(Δ262-1258)-(T162A), Isogranulatimide for hNek6(S206A), andGSK-3 Inhibitor XIII for hNek7wt. Each one of these compounds was also validated by reducing the kinases activity by at least 25%. The binding sites for these compounds were identified by in silico docking at the ATP-binding site of the respective hNeks. Potential inhibitors were first screened by thermal shift assays, had their efficiency tested by a kinase assay, and were finally analyzed by molecular docking. Our findings corroborate the idea of ATP-competitive inhibition for hNek1 and hNek6 and suggest a novel non-competitive inhibition for hNek7 in regard to GSK-3 Inhibitor XIII. Our results demonstrate that our approach is useful for finding promising general and specific hNekscandidate inhibitors, which may also function as scaffolds to design more potent and selective inhibitors. |
format | Online Article Text |
id | pubmed-6272266 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-62722662018-12-28 Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity Moraes, Eduardo Cruz Meirelles, Gabriela Vaz Honorato, Rodrigo Vargas de Souza, Tatiana de Arruda Campos Brasil de Souza, Edmarcia Elisa Murakami, Mario Tyago de Oliveira, Paulo Sergio Lopes Kobarg, Jörg Molecules Article Human Neks are a conserved protein kinase family related to cell cycle progression and cell division and are considered potential drug targets for the treatment of cancer and other pathologies. We screened the activation loop mutant kinases hNek1 and hNek2, wild-type hNek7, and five hNek6 variants in different activation/phosphorylation statesand compared them against 85 compounds using thermal shift denaturation. We identified three compounds with significant T(m) shifts: JNK Inhibitor II for hNek1(Δ262-1258)-(T162A), Isogranulatimide for hNek6(S206A), andGSK-3 Inhibitor XIII for hNek7wt. Each one of these compounds was also validated by reducing the kinases activity by at least 25%. The binding sites for these compounds were identified by in silico docking at the ATP-binding site of the respective hNeks. Potential inhibitors were first screened by thermal shift assays, had their efficiency tested by a kinase assay, and were finally analyzed by molecular docking. Our findings corroborate the idea of ATP-competitive inhibition for hNek1 and hNek6 and suggest a novel non-competitive inhibition for hNek7 in regard to GSK-3 Inhibitor XIII. Our results demonstrate that our approach is useful for finding promising general and specific hNekscandidate inhibitors, which may also function as scaffolds to design more potent and selective inhibitors. MDPI 2015-01-13 /pmc/articles/PMC6272266/ /pubmed/25591119 http://dx.doi.org/10.3390/molecules20011176 Text en © 2015 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Moraes, Eduardo Cruz Meirelles, Gabriela Vaz Honorato, Rodrigo Vargas de Souza, Tatiana de Arruda Campos Brasil de Souza, Edmarcia Elisa Murakami, Mario Tyago de Oliveira, Paulo Sergio Lopes Kobarg, Jörg Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity |
title | Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity |
title_full | Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity |
title_fullStr | Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity |
title_full_unstemmed | Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity |
title_short | Kinase Inhibitor Profile for Human Nek1, Nek6, and Nek7 and Analysis of the Structural Basis for Inhibitor Specificity |
title_sort | kinase inhibitor profile for human nek1, nek6, and nek7 and analysis of the structural basis for inhibitor specificity |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272266/ https://www.ncbi.nlm.nih.gov/pubmed/25591119 http://dx.doi.org/10.3390/molecules20011176 |
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