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Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3)

The superimposition of the X-ray complexes of cyclohexanediones (i.e., TUB015), described by our research group, and nocodazole, within the colchicine binding site of tubulin provided an almost perfect overlap of both ligands. This structural information led us to propose hybrids of TUB015 and nocod...

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Autores principales: Gargantilla, Marta, Persoons, Leentje, Kauerová, Tereza, del Río, Natalia, Daelemans, Dirk, Priego, Eva-María, Kollar, Peter, Pérez-Pérez, María-Jesús
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9318074/
https://www.ncbi.nlm.nih.gov/pubmed/35890135
http://dx.doi.org/10.3390/ph15070835
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author Gargantilla, Marta
Persoons, Leentje
Kauerová, Tereza
del Río, Natalia
Daelemans, Dirk
Priego, Eva-María
Kollar, Peter
Pérez-Pérez, María-Jesús
author_facet Gargantilla, Marta
Persoons, Leentje
Kauerová, Tereza
del Río, Natalia
Daelemans, Dirk
Priego, Eva-María
Kollar, Peter
Pérez-Pérez, María-Jesús
author_sort Gargantilla, Marta
collection PubMed
description The superimposition of the X-ray complexes of cyclohexanediones (i.e., TUB015), described by our research group, and nocodazole, within the colchicine binding site of tubulin provided an almost perfect overlap of both ligands. This structural information led us to propose hybrids of TUB015 and nocodazole using a salicylanilide core structure. Interestingly, salicylanilides, such as niclosamide, are well-established signal transducers and activators of transcription (STAT3) inhibitors with anticancer properties. Thus, different compounds with this new scaffold have been synthesized with the aim to identify compounds inhibiting tubulin polymerization and/or STAT3 signaling. As a result, we have identified new salicylanilides (6 and 16) that showed significant antiproliferative activity against a panel of cancer cells. Both compounds were able to reduce the levels of p-STAT3(Tyr705) without affecting the total expression of STAT3. While compound 6 inhibited tubulin polymerization and arrested the cell cycle of DU145 cells at G2/M, similar to TUB015, compound 16 showed a more potent effect on inhibiting STAT3 phosphorylation and arrested the cell cycle at G1/G0, similar to niclosamide. In both cases, no toxicity towards PBMC cells was detected. Thus, the salicylanilides described here represent a new class of antiproliferative agents affecting tubulin polymerization and/or STAT3 phosphorylation.
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spelling pubmed-93180742022-07-27 Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3) Gargantilla, Marta Persoons, Leentje Kauerová, Tereza del Río, Natalia Daelemans, Dirk Priego, Eva-María Kollar, Peter Pérez-Pérez, María-Jesús Pharmaceuticals (Basel) Article The superimposition of the X-ray complexes of cyclohexanediones (i.e., TUB015), described by our research group, and nocodazole, within the colchicine binding site of tubulin provided an almost perfect overlap of both ligands. This structural information led us to propose hybrids of TUB015 and nocodazole using a salicylanilide core structure. Interestingly, salicylanilides, such as niclosamide, are well-established signal transducers and activators of transcription (STAT3) inhibitors with anticancer properties. Thus, different compounds with this new scaffold have been synthesized with the aim to identify compounds inhibiting tubulin polymerization and/or STAT3 signaling. As a result, we have identified new salicylanilides (6 and 16) that showed significant antiproliferative activity against a panel of cancer cells. Both compounds were able to reduce the levels of p-STAT3(Tyr705) without affecting the total expression of STAT3. While compound 6 inhibited tubulin polymerization and arrested the cell cycle of DU145 cells at G2/M, similar to TUB015, compound 16 showed a more potent effect on inhibiting STAT3 phosphorylation and arrested the cell cycle at G1/G0, similar to niclosamide. In both cases, no toxicity towards PBMC cells was detected. Thus, the salicylanilides described here represent a new class of antiproliferative agents affecting tubulin polymerization and/or STAT3 phosphorylation. MDPI 2022-07-06 /pmc/articles/PMC9318074/ /pubmed/35890135 http://dx.doi.org/10.3390/ph15070835 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gargantilla, Marta
Persoons, Leentje
Kauerová, Tereza
del Río, Natalia
Daelemans, Dirk
Priego, Eva-María
Kollar, Peter
Pérez-Pérez, María-Jesús
Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3)
title Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3)
title_full Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3)
title_fullStr Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3)
title_full_unstemmed Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3)
title_short Hybridization Approach to Identify Salicylanilides as Inhibitors of Tubulin Polymerization and Signal Transducers and Activators of Transcription 3 (STAT3)
title_sort hybridization approach to identify salicylanilides as inhibitors of tubulin polymerization and signal transducers and activators of transcription 3 (stat3)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9318074/
https://www.ncbi.nlm.nih.gov/pubmed/35890135
http://dx.doi.org/10.3390/ph15070835
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