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TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression

Toll-like receptor 9 (TLR9) recognizes bacterial, viral or cell damage-associated DNA, which initiates innate immune responses. We have previously shown that TLR9 expression is downregulated in several viral induced cancers including HPV16-induced cervical neoplasia. Findings supported that downregu...

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Autores principales: Parroche, P, Roblot, G, Le Calvez-Kelm, F, Tout, I, Marotel, M, Malfroy, M, Durand, G, McKay, J, Ainouze, M, Carreira, C, Allatif, O, Traverse-Glehen, A, Mendiola, M, Pozo-Kreilinger, J J, Caux, C, Tommasino, M, Goutagny, N, Hasan, U A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4972902/
https://www.ncbi.nlm.nih.gov/pubmed/27454079
http://dx.doi.org/10.1038/oncsis.2016.49
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author Parroche, P
Roblot, G
Le Calvez-Kelm, F
Tout, I
Marotel, M
Malfroy, M
Durand, G
McKay, J
Ainouze, M
Carreira, C
Allatif, O
Traverse-Glehen, A
Mendiola, M
Pozo-Kreilinger, J J
Caux, C
Tommasino, M
Goutagny, N
Hasan, U A
author_facet Parroche, P
Roblot, G
Le Calvez-Kelm, F
Tout, I
Marotel, M
Malfroy, M
Durand, G
McKay, J
Ainouze, M
Carreira, C
Allatif, O
Traverse-Glehen, A
Mendiola, M
Pozo-Kreilinger, J J
Caux, C
Tommasino, M
Goutagny, N
Hasan, U A
author_sort Parroche, P
collection PubMed
description Toll-like receptor 9 (TLR9) recognizes bacterial, viral or cell damage-associated DNA, which initiates innate immune responses. We have previously shown that TLR9 expression is downregulated in several viral induced cancers including HPV16-induced cervical neoplasia. Findings supported that downregulation of TLR9 expression is involved in loss of anti-viral innate immunity allowing an efficient viral replication. Here we investigated the role of TLR9 in altering the growth of transformed epithelial cells. Re-introducing TLR9 under the control of an exogenous promoter in cervical or head and neck cancer patient-derived cells reduced cell proliferation, colony formation and prevented independent growth of cells under soft agar. Neither TLR3, 7, nor the TLR adapter protein MyD88 expression had any effect on cell proliferation, indicating that TLR9 has a unique role in controlling cell growth. The reduction of cell growth was not due to apoptosis or necrosis, yet we observed that cells expressing TLR9 were slower in entering the S-phase of the cell cycle. Microarray-based gene expression profiling analysis highlighted a strong interferon (IFN) signature in TLR9-expressing head and neck cancer cells, with an increase in IFN-type I and IL-29 expression (IFN-type III), yet neither IFN-type I nor IL-29 production was responsible for the block in cell growth. We observed that the protein half-life of p16(INK4a) was increased in TLR9-expressing cells. Taken together, these data show for the first time that TLR9 affects the cell cycle by regulating p16(INK4a) post-translational modifications and highlights the role of TLR9 in the events that lead to carcinogenesis.
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spelling pubmed-49729022016-08-12 TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression Parroche, P Roblot, G Le Calvez-Kelm, F Tout, I Marotel, M Malfroy, M Durand, G McKay, J Ainouze, M Carreira, C Allatif, O Traverse-Glehen, A Mendiola, M Pozo-Kreilinger, J J Caux, C Tommasino, M Goutagny, N Hasan, U A Oncogenesis Original Article Toll-like receptor 9 (TLR9) recognizes bacterial, viral or cell damage-associated DNA, which initiates innate immune responses. We have previously shown that TLR9 expression is downregulated in several viral induced cancers including HPV16-induced cervical neoplasia. Findings supported that downregulation of TLR9 expression is involved in loss of anti-viral innate immunity allowing an efficient viral replication. Here we investigated the role of TLR9 in altering the growth of transformed epithelial cells. Re-introducing TLR9 under the control of an exogenous promoter in cervical or head and neck cancer patient-derived cells reduced cell proliferation, colony formation and prevented independent growth of cells under soft agar. Neither TLR3, 7, nor the TLR adapter protein MyD88 expression had any effect on cell proliferation, indicating that TLR9 has a unique role in controlling cell growth. The reduction of cell growth was not due to apoptosis or necrosis, yet we observed that cells expressing TLR9 were slower in entering the S-phase of the cell cycle. Microarray-based gene expression profiling analysis highlighted a strong interferon (IFN) signature in TLR9-expressing head and neck cancer cells, with an increase in IFN-type I and IL-29 expression (IFN-type III), yet neither IFN-type I nor IL-29 production was responsible for the block in cell growth. We observed that the protein half-life of p16(INK4a) was increased in TLR9-expressing cells. Taken together, these data show for the first time that TLR9 affects the cell cycle by regulating p16(INK4a) post-translational modifications and highlights the role of TLR9 in the events that lead to carcinogenesis. Nature Publishing Group 2016-07 2016-07-25 /pmc/articles/PMC4972902/ /pubmed/27454079 http://dx.doi.org/10.1038/oncsis.2016.49 Text en Copyright © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ Oncogenesis is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Parroche, P
Roblot, G
Le Calvez-Kelm, F
Tout, I
Marotel, M
Malfroy, M
Durand, G
McKay, J
Ainouze, M
Carreira, C
Allatif, O
Traverse-Glehen, A
Mendiola, M
Pozo-Kreilinger, J J
Caux, C
Tommasino, M
Goutagny, N
Hasan, U A
TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression
title TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression
title_full TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression
title_fullStr TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression
title_full_unstemmed TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression
title_short TLR9 re-expression in cancer cells extends the S-phase and stabilizes p16(INK4a) protein expression
title_sort tlr9 re-expression in cancer cells extends the s-phase and stabilizes p16(ink4a) protein expression
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4972902/
https://www.ncbi.nlm.nih.gov/pubmed/27454079
http://dx.doi.org/10.1038/oncsis.2016.49
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