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Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability

Advanced prostate cancer will often progress to a lethal, castration-resistant state. We previously demonstrated that IKKε expression correlated with the aggressiveness of prostate cancer disease. Here, we address the potential of IKKε as a therapeutic target in prostate cancer. We examined cell fat...

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Autores principales: Gilbert, Sophie, Péant, Benjamin, Malaquin, Nicolas, Tu, Véronique, Fleury, Hubert, Leclerc-Desaulniers, Kim, Rodier, Francis, Mes-Masson, Anne-Marie, Saad, Fred
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9377745/
https://www.ncbi.nlm.nih.gov/pubmed/34965959
http://dx.doi.org/10.1158/1535-7163.MCT-21-0519
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author Gilbert, Sophie
Péant, Benjamin
Malaquin, Nicolas
Tu, Véronique
Fleury, Hubert
Leclerc-Desaulniers, Kim
Rodier, Francis
Mes-Masson, Anne-Marie
Saad, Fred
author_facet Gilbert, Sophie
Péant, Benjamin
Malaquin, Nicolas
Tu, Véronique
Fleury, Hubert
Leclerc-Desaulniers, Kim
Rodier, Francis
Mes-Masson, Anne-Marie
Saad, Fred
author_sort Gilbert, Sophie
collection PubMed
description Advanced prostate cancer will often progress to a lethal, castration-resistant state. We previously demonstrated that IKKε expression correlated with the aggressiveness of prostate cancer disease. Here, we address the potential of IKKε as a therapeutic target in prostate cancer. We examined cell fate decisions (proliferation, cell death, and senescence) in IKKε-depleted PC-3 cells, which exhibited delayed cell proliferation and a senescent phenotype, but did not undergo cell death. Using IKKε/TBK1 inhibitors, BX795 and Amlexanox, we measured their effects on cell fate decisions in androgen-sensitive prostate cancer and androgen-independent prostate cancer cell lines. Cell-cycle analyses revealed a G(2)–M cell-cycle arrest and a higher proportion of cells with 8N DNA content in androgen-independent prostate cancer cells only. Androgen-independent prostate cancer cells also displayed increased senescence-associated (SA)-β-galactosidase activity; increased γH2AX foci; genomic instability; and altered p15, p16, and p21 expression. In our mouse model, IKKε inhibitors also decreased tumor growth of androgen-independent prostate cancer xenografts but not 22Rv1 androgen-sensitive prostate cancer xenografts. Our study suggests that targeting IKKε with BX795 or Amlexanox in androgen-independent prostate cancer cells induces a senescence phenotype and demonstrates in vivo antitumor activity. These results strengthen the potential of exploiting IKKε as a therapeutic target.
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spelling pubmed-93777452023-01-05 Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability Gilbert, Sophie Péant, Benjamin Malaquin, Nicolas Tu, Véronique Fleury, Hubert Leclerc-Desaulniers, Kim Rodier, Francis Mes-Masson, Anne-Marie Saad, Fred Mol Cancer Ther Small Molecule Therapeutics Advanced prostate cancer will often progress to a lethal, castration-resistant state. We previously demonstrated that IKKε expression correlated with the aggressiveness of prostate cancer disease. Here, we address the potential of IKKε as a therapeutic target in prostate cancer. We examined cell fate decisions (proliferation, cell death, and senescence) in IKKε-depleted PC-3 cells, which exhibited delayed cell proliferation and a senescent phenotype, but did not undergo cell death. Using IKKε/TBK1 inhibitors, BX795 and Amlexanox, we measured their effects on cell fate decisions in androgen-sensitive prostate cancer and androgen-independent prostate cancer cell lines. Cell-cycle analyses revealed a G(2)–M cell-cycle arrest and a higher proportion of cells with 8N DNA content in androgen-independent prostate cancer cells only. Androgen-independent prostate cancer cells also displayed increased senescence-associated (SA)-β-galactosidase activity; increased γH2AX foci; genomic instability; and altered p15, p16, and p21 expression. In our mouse model, IKKε inhibitors also decreased tumor growth of androgen-independent prostate cancer xenografts but not 22Rv1 androgen-sensitive prostate cancer xenografts. Our study suggests that targeting IKKε with BX795 or Amlexanox in androgen-independent prostate cancer cells induces a senescence phenotype and demonstrates in vivo antitumor activity. These results strengthen the potential of exploiting IKKε as a therapeutic target. American Association for Cancer Research 2022-03-01 2022-03-04 /pmc/articles/PMC9377745/ /pubmed/34965959 http://dx.doi.org/10.1158/1535-7163.MCT-21-0519 Text en ©2021 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Small Molecule Therapeutics
Gilbert, Sophie
Péant, Benjamin
Malaquin, Nicolas
Tu, Véronique
Fleury, Hubert
Leclerc-Desaulniers, Kim
Rodier, Francis
Mes-Masson, Anne-Marie
Saad, Fred
Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability
title Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability
title_full Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability
title_fullStr Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability
title_full_unstemmed Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability
title_short Targeting IKKε in Androgen-Independent Prostate Cancer Causes Phenotypic Senescence and Genomic Instability
title_sort targeting ikkε in androgen-independent prostate cancer causes phenotypic senescence and genomic instability
topic Small Molecule Therapeutics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9377745/
https://www.ncbi.nlm.nih.gov/pubmed/34965959
http://dx.doi.org/10.1158/1535-7163.MCT-21-0519
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