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NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression

Radiation modulates both tumor cells and immune cells in the tumor microenvironment to exert its anti-tumor activity; however, the molecular connection between tumor cells and immune cells that mediates radiation-exerted tumor suppression activity in the tumor microenvironment is largely unknown. We...

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Autores principales: Simon, Priscilla S., Bardhan, Kankana, Chen, May R., Paschall, Amy V., Lu, Chunwan, Bollag, Roni J., Kong, Feng-Chong, Jin, JianYue, Kong, Feng-Ming, Waller, Jennifer L., Pollock, Raphael E., Liu, Kebin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5029635/
https://www.ncbi.nlm.nih.gov/pubmed/27014915
http://dx.doi.org/10.18632/oncotarget.8246
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author Simon, Priscilla S.
Bardhan, Kankana
Chen, May R.
Paschall, Amy V.
Lu, Chunwan
Bollag, Roni J.
Kong, Feng-Chong
Jin, JianYue
Kong, Feng-Ming
Waller, Jennifer L.
Pollock, Raphael E.
Liu, Kebin
author_facet Simon, Priscilla S.
Bardhan, Kankana
Chen, May R.
Paschall, Amy V.
Lu, Chunwan
Bollag, Roni J.
Kong, Feng-Chong
Jin, JianYue
Kong, Feng-Ming
Waller, Jennifer L.
Pollock, Raphael E.
Liu, Kebin
author_sort Simon, Priscilla S.
collection PubMed
description Radiation modulates both tumor cells and immune cells in the tumor microenvironment to exert its anti-tumor activity; however, the molecular connection between tumor cells and immune cells that mediates radiation-exerted tumor suppression activity in the tumor microenvironment is largely unknown. We report here that radiation induces rapid activation of the p65/p50 and p50/p50 NF-κB complexes in human soft tissue sarcoma (STS) cells. Radiation-activated p65/p50 and p50/p50 bind to the TNFα promoter to activate its transcription in STS cells. Radiation-induced TNFα induces tumor cell death in an autocrine manner. A sublethal dose of Smac mimetic BV6 induces cIAP1 and cIAP2 degradation to increase tumor cell sensitivity to radiation-induced cell death in vitro and to enhance radiation-mediated suppression of STS xenografts in vivo. Inhibition of caspases, RIP1, or RIP3 blocks radiation/TNFα-induced cell death, whereas inhibition of RIP1 blocks TNFα-induced caspase activation, suggesting that caspases and RIP1 act sequentially to mediate the non-compensatory cell death pathways. Furthermore, we determined in a syngeneic sarcoma mouse model that radiation up-regulates IRF3, IFNβ, and the T cell chemokines CCL2 and CCL5 in the tumor microenvironment, which are associated with activation and increased infiltration of Th1/Tc1 T cells in the tumor microenvironment. Moreover, tumor-infiltrating T cells are in their active form since both the perforin and FasL pathways are activated in irradiated tumor tissues. Consequently, combined BV6 and radiation completely suppressed tumor growth in vivo. Therefore, radiation-induced NF-κB functions as a molecular link between tumor cells and immune cells in the tumor microenvironment for radiation-mediated tumor suppression.
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spelling pubmed-50296352016-09-29 NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression Simon, Priscilla S. Bardhan, Kankana Chen, May R. Paschall, Amy V. Lu, Chunwan Bollag, Roni J. Kong, Feng-Chong Jin, JianYue Kong, Feng-Ming Waller, Jennifer L. Pollock, Raphael E. Liu, Kebin Oncotarget Research Paper Radiation modulates both tumor cells and immune cells in the tumor microenvironment to exert its anti-tumor activity; however, the molecular connection between tumor cells and immune cells that mediates radiation-exerted tumor suppression activity in the tumor microenvironment is largely unknown. We report here that radiation induces rapid activation of the p65/p50 and p50/p50 NF-κB complexes in human soft tissue sarcoma (STS) cells. Radiation-activated p65/p50 and p50/p50 bind to the TNFα promoter to activate its transcription in STS cells. Radiation-induced TNFα induces tumor cell death in an autocrine manner. A sublethal dose of Smac mimetic BV6 induces cIAP1 and cIAP2 degradation to increase tumor cell sensitivity to radiation-induced cell death in vitro and to enhance radiation-mediated suppression of STS xenografts in vivo. Inhibition of caspases, RIP1, or RIP3 blocks radiation/TNFα-induced cell death, whereas inhibition of RIP1 blocks TNFα-induced caspase activation, suggesting that caspases and RIP1 act sequentially to mediate the non-compensatory cell death pathways. Furthermore, we determined in a syngeneic sarcoma mouse model that radiation up-regulates IRF3, IFNβ, and the T cell chemokines CCL2 and CCL5 in the tumor microenvironment, which are associated with activation and increased infiltration of Th1/Tc1 T cells in the tumor microenvironment. Moreover, tumor-infiltrating T cells are in their active form since both the perforin and FasL pathways are activated in irradiated tumor tissues. Consequently, combined BV6 and radiation completely suppressed tumor growth in vivo. Therefore, radiation-induced NF-κB functions as a molecular link between tumor cells and immune cells in the tumor microenvironment for radiation-mediated tumor suppression. Impact Journals LLC 2016-03-21 /pmc/articles/PMC5029635/ /pubmed/27014915 http://dx.doi.org/10.18632/oncotarget.8246 Text en Copyright: © 2016 Simon et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Simon, Priscilla S.
Bardhan, Kankana
Chen, May R.
Paschall, Amy V.
Lu, Chunwan
Bollag, Roni J.
Kong, Feng-Chong
Jin, JianYue
Kong, Feng-Ming
Waller, Jennifer L.
Pollock, Raphael E.
Liu, Kebin
NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression
title NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression
title_full NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression
title_fullStr NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression
title_full_unstemmed NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression
title_short NF-κB functions as a molecular link between tumor cells and Th1/Tc1 T cells in the tumor microenvironment to exert radiation-mediated tumor suppression
title_sort nf-κb functions as a molecular link between tumor cells and th1/tc1 t cells in the tumor microenvironment to exert radiation-mediated tumor suppression
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5029635/
https://www.ncbi.nlm.nih.gov/pubmed/27014915
http://dx.doi.org/10.18632/oncotarget.8246
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