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The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways

Inhibitor-kappaB kinase epsilon (IKKε) and TANK-binding kinase 1 (TBK1) are non-canonical IκB kinases, both described as contributors to tumor growth and metastasis in different cancer types. Several hints indicate that they are also involved in the pathogenesis of melanoma; however, the impact of t...

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Autores principales: Möller, Moritz, Wasel, Julia, Schmetzer, Julia, Weiß, Ulrike, Meissner, Markus, Schiffmann, Susanne, Weigert, Andreas, Möser, Christine V., Niederberger, Ellen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369692/
https://www.ncbi.nlm.nih.gov/pubmed/32630674
http://dx.doi.org/10.3390/ijms21134721
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author Möller, Moritz
Wasel, Julia
Schmetzer, Julia
Weiß, Ulrike
Meissner, Markus
Schiffmann, Susanne
Weigert, Andreas
Möser, Christine V.
Niederberger, Ellen
author_facet Möller, Moritz
Wasel, Julia
Schmetzer, Julia
Weiß, Ulrike
Meissner, Markus
Schiffmann, Susanne
Weigert, Andreas
Möser, Christine V.
Niederberger, Ellen
author_sort Möller, Moritz
collection PubMed
description Inhibitor-kappaB kinase epsilon (IKKε) and TANK-binding kinase 1 (TBK1) are non-canonical IκB kinases, both described as contributors to tumor growth and metastasis in different cancer types. Several hints indicate that they are also involved in the pathogenesis of melanoma; however, the impact of their inhibition as a potential therapeutic measure in this “difficult-to-treat” cancer type has not been investigated so far. We assessed IKKε and TBK1 expression in human malignant melanoma cells, primary tumors and the metastasis of melanoma patients. Both kinases were expressed in the primary tumor and in metastasis and showed a significant overexpression in tumor cells in comparison to melanocytes. The pharmacological inhibition of IKKε/TBK1 by the approved drug amlexanox reduced cell proliferation, migration and invasion. Amlexanox did not affect the cell cycle progression nor apoptosis induction but significantly suppressed autophagy in melanoma cells. The analysis of potential functional downstream targets revealed that NF-кB and ERK pathways might be involved in kinase-mediated effects. In an in vivo xenograft model in nude mice, amlexanox treatment significantly reduced tumor growth. In conclusion, amlexanox was able to suppress tumor progression potentially by the inhibition of autophagy as well as NF-кB and MAP kinase pathways and might therefore constitute a promising candidate for melanoma therapy.
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spelling pubmed-73696922020-07-21 The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways Möller, Moritz Wasel, Julia Schmetzer, Julia Weiß, Ulrike Meissner, Markus Schiffmann, Susanne Weigert, Andreas Möser, Christine V. Niederberger, Ellen Int J Mol Sci Article Inhibitor-kappaB kinase epsilon (IKKε) and TANK-binding kinase 1 (TBK1) are non-canonical IκB kinases, both described as contributors to tumor growth and metastasis in different cancer types. Several hints indicate that they are also involved in the pathogenesis of melanoma; however, the impact of their inhibition as a potential therapeutic measure in this “difficult-to-treat” cancer type has not been investigated so far. We assessed IKKε and TBK1 expression in human malignant melanoma cells, primary tumors and the metastasis of melanoma patients. Both kinases were expressed in the primary tumor and in metastasis and showed a significant overexpression in tumor cells in comparison to melanocytes. The pharmacological inhibition of IKKε/TBK1 by the approved drug amlexanox reduced cell proliferation, migration and invasion. Amlexanox did not affect the cell cycle progression nor apoptosis induction but significantly suppressed autophagy in melanoma cells. The analysis of potential functional downstream targets revealed that NF-кB and ERK pathways might be involved in kinase-mediated effects. In an in vivo xenograft model in nude mice, amlexanox treatment significantly reduced tumor growth. In conclusion, amlexanox was able to suppress tumor progression potentially by the inhibition of autophagy as well as NF-кB and MAP kinase pathways and might therefore constitute a promising candidate for melanoma therapy. MDPI 2020-07-02 /pmc/articles/PMC7369692/ /pubmed/32630674 http://dx.doi.org/10.3390/ijms21134721 Text en © 2020 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Möller, Moritz
Wasel, Julia
Schmetzer, Julia
Weiß, Ulrike
Meissner, Markus
Schiffmann, Susanne
Weigert, Andreas
Möser, Christine V.
Niederberger, Ellen
The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways
title The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways
title_full The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways
title_fullStr The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways
title_full_unstemmed The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways
title_short The Specific IKKε/TBK1 Inhibitor Amlexanox Suppresses Human Melanoma by the Inhibition of Autophagy, NF-κB and MAP Kinase Pathways
title_sort specific ikkε/tbk1 inhibitor amlexanox suppresses human melanoma by the inhibition of autophagy, nf-κb and map kinase pathways
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369692/
https://www.ncbi.nlm.nih.gov/pubmed/32630674
http://dx.doi.org/10.3390/ijms21134721
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