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Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines

Plk1 is a checkpoint protein whose role spans all of mitosis and includes DNA repair, and is highly conserved in eukaryotes from yeast to man. Consistent with this wide array of functions for Plk1, the cellular consequences of Plk1 disruption are diverse, spanning delays in mitotic entry, mitotic sp...

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Autores principales: Driscoll, Denise L., Chakravarty, Arijit, Bowman, Doug, Shinde, Vaishali, Lasky, Kerri, Shi, Judy, Vos, Tricia, Stringer, Bradley, Amidon, Ben, D'Amore, Natalie, Hyer, Marc L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4218841/
https://www.ncbi.nlm.nih.gov/pubmed/25365521
http://dx.doi.org/10.1371/journal.pone.0111060
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author Driscoll, Denise L.
Chakravarty, Arijit
Bowman, Doug
Shinde, Vaishali
Lasky, Kerri
Shi, Judy
Vos, Tricia
Stringer, Bradley
Amidon, Ben
D'Amore, Natalie
Hyer, Marc L.
author_facet Driscoll, Denise L.
Chakravarty, Arijit
Bowman, Doug
Shinde, Vaishali
Lasky, Kerri
Shi, Judy
Vos, Tricia
Stringer, Bradley
Amidon, Ben
D'Amore, Natalie
Hyer, Marc L.
author_sort Driscoll, Denise L.
collection PubMed
description Plk1 is a checkpoint protein whose role spans all of mitosis and includes DNA repair, and is highly conserved in eukaryotes from yeast to man. Consistent with this wide array of functions for Plk1, the cellular consequences of Plk1 disruption are diverse, spanning delays in mitotic entry, mitotic spindle abnormalities, and transient mitotic arrest leading to mitotic slippage and failures in cytokinesis. In this work, we present the in vitro and in vivo consequences of Plk1 inhibition in cancer cells using potent, selective small-molecule Plk1 inhibitors and Plk1 genetic knock-down approaches. We demonstrate for the first time that cellular senescence is the predominant outcome of Plk1 inhibition in some cancer cell lines, whereas in other cancer cell lines the dominant outcome appears to be apoptosis, as has been reported in the literature. We also demonstrate strong induction of DNA double-strand breaks in all six lines examined (as assayed by γH2AX), which occurs either during mitotic arrest or mitotic-exit, and may be linked to the downstream induction of senescence. Taken together, our findings expand the view of Plk1 inhibition, demonstrating the occurrence of a non-apoptotic outcome in some settings. Our findings are also consistent with the possibility that mitotic arrest observed as a result of Plk1 inhibition is at least partially due to the presence of unrepaired double-strand breaks in mitosis. These novel findings may lead to alternative strategies for the development of novel therapeutic agents targeting Plk1, in the selection of biomarkers, patient populations, combination partners and dosing regimens.
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spelling pubmed-42188412014-11-05 Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines Driscoll, Denise L. Chakravarty, Arijit Bowman, Doug Shinde, Vaishali Lasky, Kerri Shi, Judy Vos, Tricia Stringer, Bradley Amidon, Ben D'Amore, Natalie Hyer, Marc L. PLoS One Research Article Plk1 is a checkpoint protein whose role spans all of mitosis and includes DNA repair, and is highly conserved in eukaryotes from yeast to man. Consistent with this wide array of functions for Plk1, the cellular consequences of Plk1 disruption are diverse, spanning delays in mitotic entry, mitotic spindle abnormalities, and transient mitotic arrest leading to mitotic slippage and failures in cytokinesis. In this work, we present the in vitro and in vivo consequences of Plk1 inhibition in cancer cells using potent, selective small-molecule Plk1 inhibitors and Plk1 genetic knock-down approaches. We demonstrate for the first time that cellular senescence is the predominant outcome of Plk1 inhibition in some cancer cell lines, whereas in other cancer cell lines the dominant outcome appears to be apoptosis, as has been reported in the literature. We also demonstrate strong induction of DNA double-strand breaks in all six lines examined (as assayed by γH2AX), which occurs either during mitotic arrest or mitotic-exit, and may be linked to the downstream induction of senescence. Taken together, our findings expand the view of Plk1 inhibition, demonstrating the occurrence of a non-apoptotic outcome in some settings. Our findings are also consistent with the possibility that mitotic arrest observed as a result of Plk1 inhibition is at least partially due to the presence of unrepaired double-strand breaks in mitosis. These novel findings may lead to alternative strategies for the development of novel therapeutic agents targeting Plk1, in the selection of biomarkers, patient populations, combination partners and dosing regimens. Public Library of Science 2014-11-03 /pmc/articles/PMC4218841/ /pubmed/25365521 http://dx.doi.org/10.1371/journal.pone.0111060 Text en © 2014 Driscoll et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Driscoll, Denise L.
Chakravarty, Arijit
Bowman, Doug
Shinde, Vaishali
Lasky, Kerri
Shi, Judy
Vos, Tricia
Stringer, Bradley
Amidon, Ben
D'Amore, Natalie
Hyer, Marc L.
Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines
title Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines
title_full Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines
title_fullStr Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines
title_full_unstemmed Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines
title_short Plk1 Inhibition Causes Post-Mitotic DNA Damage and Senescence in a Range of Human Tumor Cell Lines
title_sort plk1 inhibition causes post-mitotic dna damage and senescence in a range of human tumor cell lines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4218841/
https://www.ncbi.nlm.nih.gov/pubmed/25365521
http://dx.doi.org/10.1371/journal.pone.0111060
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