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ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors

With the existing knowledge of ATM's role in therapeutic resistance, the present study aimed at identifying the molecular mechanisms that influence ATM to oscillate between chemoresistance and chemosensitivity. We observed that the redox status of tumors functions as a major determinant of ATM-...

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Autores principales: Mohanty, S, Saha, S, Md S Hossain, D, Adhikary, A, Mukherjee, S, Manna, A, Chakraborty, S, Mazumdar, M, Ray, P, Das, K, Chakraborty, J, Sa, G, Das, T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4040699/
https://www.ncbi.nlm.nih.gov/pubmed/24457965
http://dx.doi.org/10.1038/cddis.2013.534
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author Mohanty, S
Saha, S
Md S Hossain, D
Adhikary, A
Mukherjee, S
Manna, A
Chakraborty, S
Mazumdar, M
Ray, P
Das, K
Chakraborty, J
Sa, G
Das, T
author_facet Mohanty, S
Saha, S
Md S Hossain, D
Adhikary, A
Mukherjee, S
Manna, A
Chakraborty, S
Mazumdar, M
Ray, P
Das, K
Chakraborty, J
Sa, G
Das, T
author_sort Mohanty, S
collection PubMed
description With the existing knowledge of ATM's role in therapeutic resistance, the present study aimed at identifying the molecular mechanisms that influence ATM to oscillate between chemoresistance and chemosensitivity. We observed that the redox status of tumors functions as a major determinant of ATM-dependent ‘resistance-to-apoptosis' molecular switch. At a low reactive oxygen species (ROS) condition during genotoxic insult, the ATM/sumoylated-IKKγ interaction induced NFκB activation that resisted JNK-mediated apoptosis, whereas increasing cellular ROS restored ATM/JNK apoptotic signaling. A search for the upstream missing link revealed that high ROS induces oxidation and ubiquitin-mediated degradation of PIASγ, thereby disrupting PIASγ-IKKγ cross talk, a pre-requisite for IKKγ sumoylation and subsequent NFκB activation. Interruption in the PIASγ-mediated resistance pathway channels ATM signaling toward ATM/JNK pro-death circuitry. These in vitro results also translated to sensitive and resistant tumor allograft mouse models in which low ROS-induced resistance was over-ruled in PIASγ knockout tumors, while its overexpression inhibited high ROS-dependent apoptotic cues. Cumulatively, our findings identified an unappreciated yet critical combinatorial function of cellular ROS and PIASγ in regulating ATM-mediated chemosensitization of resistant tumors. Thus, therapeutic strategies employing ROS upregulation to inhibit PIASγ during genotoxic therapy may, in future, help to eliminate the problems of NFκB-mediated tumor drug resistance.
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spelling pubmed-40406992014-06-02 ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors Mohanty, S Saha, S Md S Hossain, D Adhikary, A Mukherjee, S Manna, A Chakraborty, S Mazumdar, M Ray, P Das, K Chakraborty, J Sa, G Das, T Cell Death Dis Original Article With the existing knowledge of ATM's role in therapeutic resistance, the present study aimed at identifying the molecular mechanisms that influence ATM to oscillate between chemoresistance and chemosensitivity. We observed that the redox status of tumors functions as a major determinant of ATM-dependent ‘resistance-to-apoptosis' molecular switch. At a low reactive oxygen species (ROS) condition during genotoxic insult, the ATM/sumoylated-IKKγ interaction induced NFκB activation that resisted JNK-mediated apoptosis, whereas increasing cellular ROS restored ATM/JNK apoptotic signaling. A search for the upstream missing link revealed that high ROS induces oxidation and ubiquitin-mediated degradation of PIASγ, thereby disrupting PIASγ-IKKγ cross talk, a pre-requisite for IKKγ sumoylation and subsequent NFκB activation. Interruption in the PIASγ-mediated resistance pathway channels ATM signaling toward ATM/JNK pro-death circuitry. These in vitro results also translated to sensitive and resistant tumor allograft mouse models in which low ROS-induced resistance was over-ruled in PIASγ knockout tumors, while its overexpression inhibited high ROS-dependent apoptotic cues. Cumulatively, our findings identified an unappreciated yet critical combinatorial function of cellular ROS and PIASγ in regulating ATM-mediated chemosensitization of resistant tumors. Thus, therapeutic strategies employing ROS upregulation to inhibit PIASγ during genotoxic therapy may, in future, help to eliminate the problems of NFκB-mediated tumor drug resistance. Nature Publishing Group 2014-01 2014-01-23 /pmc/articles/PMC4040699/ /pubmed/24457965 http://dx.doi.org/10.1038/cddis.2013.534 Text en Copyright © 2014 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Original Article
Mohanty, S
Saha, S
Md S Hossain, D
Adhikary, A
Mukherjee, S
Manna, A
Chakraborty, S
Mazumdar, M
Ray, P
Das, K
Chakraborty, J
Sa, G
Das, T
ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors
title ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors
title_full ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors
title_fullStr ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors
title_full_unstemmed ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors
title_short ROS-PIASγ cross talk channelizes ATM signaling from resistance to apoptosis during chemosensitization of resistant tumors
title_sort ros-piasγ cross talk channelizes atm signaling from resistance to apoptosis during chemosensitization of resistant tumors
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4040699/
https://www.ncbi.nlm.nih.gov/pubmed/24457965
http://dx.doi.org/10.1038/cddis.2013.534
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