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KDM5 histone demethylases repress immune response via suppression of STING

Cyclic GMP-AMP (cGAMP) synthase (cGAS) stimulator of interferon genes (STING) senses pathogen-derived or abnormal self-DNA in the cytosol and triggers an innate immune defense against microbial infection and cancer. STING agonists induce both innate and adaptive immune responses and are a new class...

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Autores principales: Wu, Lizhen, Cao, Jian, Cai, Wesley L., Lang, Sabine M., Horton, John R., Jansen, Daniel J., Liu, Zongzhi Z., Chen, Jocelyn F., Zhang, Meiling, Mott, Bryan T., Pohida, Katherine, Rai, Ganesha, Kales, Stephen C., Henderson, Mark J., Hu, Xin, Jadhav, Ajit, Maloney, David J., Simeonov, Anton, Zhu, Shu, Iwasaki, Akiko, Hall, Matthew D., Cheng, Xiaodong, Shadel, Gerald S., Yan, Qin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6095604/
https://www.ncbi.nlm.nih.gov/pubmed/30080846
http://dx.doi.org/10.1371/journal.pbio.2006134
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author Wu, Lizhen
Cao, Jian
Cai, Wesley L.
Lang, Sabine M.
Horton, John R.
Jansen, Daniel J.
Liu, Zongzhi Z.
Chen, Jocelyn F.
Zhang, Meiling
Mott, Bryan T.
Pohida, Katherine
Rai, Ganesha
Kales, Stephen C.
Henderson, Mark J.
Hu, Xin
Jadhav, Ajit
Maloney, David J.
Simeonov, Anton
Zhu, Shu
Iwasaki, Akiko
Hall, Matthew D.
Cheng, Xiaodong
Shadel, Gerald S.
Yan, Qin
author_facet Wu, Lizhen
Cao, Jian
Cai, Wesley L.
Lang, Sabine M.
Horton, John R.
Jansen, Daniel J.
Liu, Zongzhi Z.
Chen, Jocelyn F.
Zhang, Meiling
Mott, Bryan T.
Pohida, Katherine
Rai, Ganesha
Kales, Stephen C.
Henderson, Mark J.
Hu, Xin
Jadhav, Ajit
Maloney, David J.
Simeonov, Anton
Zhu, Shu
Iwasaki, Akiko
Hall, Matthew D.
Cheng, Xiaodong
Shadel, Gerald S.
Yan, Qin
author_sort Wu, Lizhen
collection PubMed
description Cyclic GMP-AMP (cGAMP) synthase (cGAS) stimulator of interferon genes (STING) senses pathogen-derived or abnormal self-DNA in the cytosol and triggers an innate immune defense against microbial infection and cancer. STING agonists induce both innate and adaptive immune responses and are a new class of cancer immunotherapy agents tested in multiple clinical trials. However, STING is commonly silenced in cancer cells via unclear mechanisms, limiting the application of these agonists. Here, we report that the expression of STING is epigenetically suppressed by the histone H3K4 lysine demethylases KDM5B and KDM5C and is activated by the opposing H3K4 methyltransferases. The induction of STING expression by KDM5 blockade triggered a robust interferon response in a cytosolic DNA-dependent manner in breast cancer cells. This response resulted in resistance to infection by DNA and RNA viruses. In human tumors, KDM5B expression is inversely associated with STING expression in multiple cancer types, with the level of intratumoral CD8(+) T cells, and with patient survival in cancers with a high level of cytosolic DNA, such as human papilloma virus (HPV)-positive head and neck cancer. These results demonstrate a novel epigenetic regulatory pathway of immune response and suggest that KDM5 demethylases are potential targets for antipathogen treatment and anticancer immunotherapy.
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spelling pubmed-60956042018-08-30 KDM5 histone demethylases repress immune response via suppression of STING Wu, Lizhen Cao, Jian Cai, Wesley L. Lang, Sabine M. Horton, John R. Jansen, Daniel J. Liu, Zongzhi Z. Chen, Jocelyn F. Zhang, Meiling Mott, Bryan T. Pohida, Katherine Rai, Ganesha Kales, Stephen C. Henderson, Mark J. Hu, Xin Jadhav, Ajit Maloney, David J. Simeonov, Anton Zhu, Shu Iwasaki, Akiko Hall, Matthew D. Cheng, Xiaodong Shadel, Gerald S. Yan, Qin PLoS Biol Research Article Cyclic GMP-AMP (cGAMP) synthase (cGAS) stimulator of interferon genes (STING) senses pathogen-derived or abnormal self-DNA in the cytosol and triggers an innate immune defense against microbial infection and cancer. STING agonists induce both innate and adaptive immune responses and are a new class of cancer immunotherapy agents tested in multiple clinical trials. However, STING is commonly silenced in cancer cells via unclear mechanisms, limiting the application of these agonists. Here, we report that the expression of STING is epigenetically suppressed by the histone H3K4 lysine demethylases KDM5B and KDM5C and is activated by the opposing H3K4 methyltransferases. The induction of STING expression by KDM5 blockade triggered a robust interferon response in a cytosolic DNA-dependent manner in breast cancer cells. This response resulted in resistance to infection by DNA and RNA viruses. In human tumors, KDM5B expression is inversely associated with STING expression in multiple cancer types, with the level of intratumoral CD8(+) T cells, and with patient survival in cancers with a high level of cytosolic DNA, such as human papilloma virus (HPV)-positive head and neck cancer. These results demonstrate a novel epigenetic regulatory pathway of immune response and suggest that KDM5 demethylases are potential targets for antipathogen treatment and anticancer immunotherapy. Public Library of Science 2018-08-06 /pmc/articles/PMC6095604/ /pubmed/30080846 http://dx.doi.org/10.1371/journal.pbio.2006134 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Wu, Lizhen
Cao, Jian
Cai, Wesley L.
Lang, Sabine M.
Horton, John R.
Jansen, Daniel J.
Liu, Zongzhi Z.
Chen, Jocelyn F.
Zhang, Meiling
Mott, Bryan T.
Pohida, Katherine
Rai, Ganesha
Kales, Stephen C.
Henderson, Mark J.
Hu, Xin
Jadhav, Ajit
Maloney, David J.
Simeonov, Anton
Zhu, Shu
Iwasaki, Akiko
Hall, Matthew D.
Cheng, Xiaodong
Shadel, Gerald S.
Yan, Qin
KDM5 histone demethylases repress immune response via suppression of STING
title KDM5 histone demethylases repress immune response via suppression of STING
title_full KDM5 histone demethylases repress immune response via suppression of STING
title_fullStr KDM5 histone demethylases repress immune response via suppression of STING
title_full_unstemmed KDM5 histone demethylases repress immune response via suppression of STING
title_short KDM5 histone demethylases repress immune response via suppression of STING
title_sort kdm5 histone demethylases repress immune response via suppression of sting
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6095604/
https://www.ncbi.nlm.nih.gov/pubmed/30080846
http://dx.doi.org/10.1371/journal.pbio.2006134
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