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Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity

The functional status of the tumor suppressor p53 is a critical component in determining the sensitivity of cancer cells to many chemotherapeutic agents. DNA topoisomerase II (Top2) plays essential roles in DNA metabolism and is the target of FDA approved chemotherapeutic agents. Topoisomerase targe...

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Autores principales: Menendez, Daniel, Anand, Jay R., Murphy, Carri C., Bell, Whitney J., Fu, Jiaqi, Slepushkina, Nadia, Buehler, Eugen, Martin, Scott E., Lal-Nag, Madhu, Nitiss, John L., Resnick, Michael A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8845119/
https://www.ncbi.nlm.nih.gov/pubmed/35178190
http://dx.doi.org/10.18632/oncotarget.28195
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author Menendez, Daniel
Anand, Jay R.
Murphy, Carri C.
Bell, Whitney J.
Fu, Jiaqi
Slepushkina, Nadia
Buehler, Eugen
Martin, Scott E.
Lal-Nag, Madhu
Nitiss, John L.
Resnick, Michael A.
author_facet Menendez, Daniel
Anand, Jay R.
Murphy, Carri C.
Bell, Whitney J.
Fu, Jiaqi
Slepushkina, Nadia
Buehler, Eugen
Martin, Scott E.
Lal-Nag, Madhu
Nitiss, John L.
Resnick, Michael A.
author_sort Menendez, Daniel
collection PubMed
description The functional status of the tumor suppressor p53 is a critical component in determining the sensitivity of cancer cells to many chemotherapeutic agents. DNA topoisomerase II (Top2) plays essential roles in DNA metabolism and is the target of FDA approved chemotherapeutic agents. Topoisomerase targeting drugs convert the enzyme into a DNA damaging agent and p53 influences cellular responses to these agents. We assessed the impact of the loss of p53 function on the formation of DNA damage induced by the Top2 poison etoposide. Using human HCT116 cells, we found resistance to etoposide in cell growth assays upon the functional loss of p53. Nonetheless, cells lacking fully functional p53 were etoposide hypersensitive in clonogenic survival assays. This complex role of p53 led us to directly examine the effects of p53 status on topoisomerase-induced DNA damage. A deficiency in functional p53 resulted in elevated levels of the Top2 covalent complexes (Top2cc) in multiple cell lines. Employing genome-wide siRNA screens, we identified a set of genes for which reduced expression resulted in enhanced synthetic lethality upon etoposide treatment of p53 defective cells. We focused on one hit from this screen, ATR, and showed that decreased expression sensitized the p53-defective cells to etoposide in all assays and generated elevated levels of Top2cc in both p53 proficient and deficient cells. Our findings suggest that a combination of etoposide treatment with functional inactivation of DNA repair in p53 defective cells could be used to enhance the therapeutic efficacy of Top2 targeting agents.
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spelling pubmed-88451192022-02-16 Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity Menendez, Daniel Anand, Jay R. Murphy, Carri C. Bell, Whitney J. Fu, Jiaqi Slepushkina, Nadia Buehler, Eugen Martin, Scott E. Lal-Nag, Madhu Nitiss, John L. Resnick, Michael A. Oncotarget Research Paper The functional status of the tumor suppressor p53 is a critical component in determining the sensitivity of cancer cells to many chemotherapeutic agents. DNA topoisomerase II (Top2) plays essential roles in DNA metabolism and is the target of FDA approved chemotherapeutic agents. Topoisomerase targeting drugs convert the enzyme into a DNA damaging agent and p53 influences cellular responses to these agents. We assessed the impact of the loss of p53 function on the formation of DNA damage induced by the Top2 poison etoposide. Using human HCT116 cells, we found resistance to etoposide in cell growth assays upon the functional loss of p53. Nonetheless, cells lacking fully functional p53 were etoposide hypersensitive in clonogenic survival assays. This complex role of p53 led us to directly examine the effects of p53 status on topoisomerase-induced DNA damage. A deficiency in functional p53 resulted in elevated levels of the Top2 covalent complexes (Top2cc) in multiple cell lines. Employing genome-wide siRNA screens, we identified a set of genes for which reduced expression resulted in enhanced synthetic lethality upon etoposide treatment of p53 defective cells. We focused on one hit from this screen, ATR, and showed that decreased expression sensitized the p53-defective cells to etoposide in all assays and generated elevated levels of Top2cc in both p53 proficient and deficient cells. Our findings suggest that a combination of etoposide treatment with functional inactivation of DNA repair in p53 defective cells could be used to enhance the therapeutic efficacy of Top2 targeting agents. Impact Journals LLC 2022-02-14 /pmc/articles/PMC8845119/ /pubmed/35178190 http://dx.doi.org/10.18632/oncotarget.28195 Text en Copyright: © 2022 Menendez et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Menendez, Daniel
Anand, Jay R.
Murphy, Carri C.
Bell, Whitney J.
Fu, Jiaqi
Slepushkina, Nadia
Buehler, Eugen
Martin, Scott E.
Lal-Nag, Madhu
Nitiss, John L.
Resnick, Michael A.
Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity
title Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity
title_full Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity
title_fullStr Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity
title_full_unstemmed Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity
title_short Etoposide-induced DNA damage is increased in p53 mutants: identification of ATR and other genes that influence effects of p53 mutations on Top2-induced cytotoxicity
title_sort etoposide-induced dna damage is increased in p53 mutants: identification of atr and other genes that influence effects of p53 mutations on top2-induced cytotoxicity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8845119/
https://www.ncbi.nlm.nih.gov/pubmed/35178190
http://dx.doi.org/10.18632/oncotarget.28195
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