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N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells

BACKGROUND: The DNA damage checkpoint signalling cascade sense damaged DNA and coordinates cell cycle arrest, DNA repair, and/or apoptosis. However, it is still not well understood how the signalling system differentiates between different kinds of DNA damage. N-nitroso-N-ethylurea (NEU), a DNA ethy...

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Autores principales: Bodakuntla, Satish, V, Libi Anandi, Sural, Surojit, Trivedi, Prasad, Lahiri, Mayurika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021545/
https://www.ncbi.nlm.nih.gov/pubmed/24758542
http://dx.doi.org/10.1186/1471-2407-14-287
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author Bodakuntla, Satish
V, Libi Anandi
Sural, Surojit
Trivedi, Prasad
Lahiri, Mayurika
author_facet Bodakuntla, Satish
V, Libi Anandi
Sural, Surojit
Trivedi, Prasad
Lahiri, Mayurika
author_sort Bodakuntla, Satish
collection PubMed
description BACKGROUND: The DNA damage checkpoint signalling cascade sense damaged DNA and coordinates cell cycle arrest, DNA repair, and/or apoptosis. However, it is still not well understood how the signalling system differentiates between different kinds of DNA damage. N-nitroso-N-ethylurea (NEU), a DNA ethylating agent induces both transversions and transition mutations. METHODS: Immunoblot and comet assays were performed to detect DNA breaks and activation of the canonical checkpoint signalling kinases following NEU damage upto 2 hours. To investigate whether mismatch repair played a role in checkpoint activation, knock-down studies were performed while flow cytometry analysis was done to understand whether the activation of the checkpoint kinases was cell cycle phase specific. Finally, breast epithelial cells were grown as 3-dimensional spheroid cultures to study whether NEU can induce upregulation of vimentin as well as disrupt cell polarity of the breast acini, thus causing transformation of epithelial cells in culture. RESULTS: We report a novel finding that NEU causes activation of major checkpoint signalling kinases, Chk1 and Chk2. This activation is temporally controlled with Chk2 activation preceding Chk1 phosphorylation, and absence of cross talk between the two parallel signalling pathways, ATM and ATR. Damage caused by NEU leads to the temporal formation of both double strand and single strand breaks. Activation of checkpoints following NEU damage is cell cycle phase dependent wherein Chk2 is primarily activated during G2-M phase whilst in S phase, there is immediate Chk1 phosphorylation and delayed Chk2 response. Surprisingly, the mismatch repair system does not play a role in checkpoint activation, at doses and duration of NEU used in the experiments. Interestingly, NEU caused disruption of the well-formed polarised spheroid archithecture and upregulation of vimentin in three-dimensional breast acini cultures of non-malignant breast epithelial cells upon NEU treatment indicating NEU to have the potential to cause early transformation in the cells. CONCLUSION: NEU causes damage in mammalian cells in the form of double strand and single strand breaks that temporally activate the major checkpoint signalling kinases without the occurrence of cross-talk between the pathways. NEU also appear to cause transformation in three-dimensional spheroid cultures.
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spelling pubmed-40215452014-05-16 N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells Bodakuntla, Satish V, Libi Anandi Sural, Surojit Trivedi, Prasad Lahiri, Mayurika BMC Cancer Research Article BACKGROUND: The DNA damage checkpoint signalling cascade sense damaged DNA and coordinates cell cycle arrest, DNA repair, and/or apoptosis. However, it is still not well understood how the signalling system differentiates between different kinds of DNA damage. N-nitroso-N-ethylurea (NEU), a DNA ethylating agent induces both transversions and transition mutations. METHODS: Immunoblot and comet assays were performed to detect DNA breaks and activation of the canonical checkpoint signalling kinases following NEU damage upto 2 hours. To investigate whether mismatch repair played a role in checkpoint activation, knock-down studies were performed while flow cytometry analysis was done to understand whether the activation of the checkpoint kinases was cell cycle phase specific. Finally, breast epithelial cells were grown as 3-dimensional spheroid cultures to study whether NEU can induce upregulation of vimentin as well as disrupt cell polarity of the breast acini, thus causing transformation of epithelial cells in culture. RESULTS: We report a novel finding that NEU causes activation of major checkpoint signalling kinases, Chk1 and Chk2. This activation is temporally controlled with Chk2 activation preceding Chk1 phosphorylation, and absence of cross talk between the two parallel signalling pathways, ATM and ATR. Damage caused by NEU leads to the temporal formation of both double strand and single strand breaks. Activation of checkpoints following NEU damage is cell cycle phase dependent wherein Chk2 is primarily activated during G2-M phase whilst in S phase, there is immediate Chk1 phosphorylation and delayed Chk2 response. Surprisingly, the mismatch repair system does not play a role in checkpoint activation, at doses and duration of NEU used in the experiments. Interestingly, NEU caused disruption of the well-formed polarised spheroid archithecture and upregulation of vimentin in three-dimensional breast acini cultures of non-malignant breast epithelial cells upon NEU treatment indicating NEU to have the potential to cause early transformation in the cells. CONCLUSION: NEU causes damage in mammalian cells in the form of double strand and single strand breaks that temporally activate the major checkpoint signalling kinases without the occurrence of cross-talk between the pathways. NEU also appear to cause transformation in three-dimensional spheroid cultures. BioMed Central 2014-04-24 /pmc/articles/PMC4021545/ /pubmed/24758542 http://dx.doi.org/10.1186/1471-2407-14-287 Text en Copyright © 2014 Bodakuntla et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Bodakuntla, Satish
V, Libi Anandi
Sural, Surojit
Trivedi, Prasad
Lahiri, Mayurika
N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells
title N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells
title_full N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells
title_fullStr N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells
title_full_unstemmed N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells
title_short N-nitroso-N-ethylurea activates DNA damage surveillance pathways and induces transformation in mammalian cells
title_sort n-nitroso-n-ethylurea activates dna damage surveillance pathways and induces transformation in mammalian cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021545/
https://www.ncbi.nlm.nih.gov/pubmed/24758542
http://dx.doi.org/10.1186/1471-2407-14-287
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