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TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells

Cellular responses to the loss of genomic stability are well-established, while how mammalian cells respond to chromatin destabilization is largely unknown. We previously found that DNA demethylation on p53-deficient background leads to transcription of repetitive heterochromatin elements, followed...

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Autores principales: Leonova, Katerina, Safina, Alfiya, Nesher, Elimelech, Sandlesh, Poorva, Pratt, Rachel, Burkhart, Catherine, Lipchick, Brittany, Gitlin, Ilya, Frangou, Costakis, Koman, Igor, Wang, Jianmin, Kirsanov, Kirill, Yakubovskaya, Marianna G, Gudkov, Andrei V, Gurova, Katerina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5815852/
https://www.ncbi.nlm.nih.gov/pubmed/29400649
http://dx.doi.org/10.7554/eLife.30842
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author Leonova, Katerina
Safina, Alfiya
Nesher, Elimelech
Sandlesh, Poorva
Pratt, Rachel
Burkhart, Catherine
Lipchick, Brittany
Gitlin, Ilya
Frangou, Costakis
Koman, Igor
Wang, Jianmin
Kirsanov, Kirill
Yakubovskaya, Marianna G
Gudkov, Andrei V
Gurova, Katerina
author_facet Leonova, Katerina
Safina, Alfiya
Nesher, Elimelech
Sandlesh, Poorva
Pratt, Rachel
Burkhart, Catherine
Lipchick, Brittany
Gitlin, Ilya
Frangou, Costakis
Koman, Igor
Wang, Jianmin
Kirsanov, Kirill
Yakubovskaya, Marianna G
Gudkov, Andrei V
Gurova, Katerina
author_sort Leonova, Katerina
collection PubMed
description Cellular responses to the loss of genomic stability are well-established, while how mammalian cells respond to chromatin destabilization is largely unknown. We previously found that DNA demethylation on p53-deficient background leads to transcription of repetitive heterochromatin elements, followed by an interferon response, a phenomenon we named TRAIN (Transcription of Repeats Activates INterferon). Here, we report that curaxin, an anticancer small molecule, destabilizing nucleosomes via disruption of histone/DNA interactions, also induces TRAIN. Furthermore, curaxin inhibits oncogene-induced transformation and tumor growth in mice in an interferon-dependent manner, suggesting that anticancer activity of curaxin, previously attributed to p53-activation and NF-kappaB-inhibition, may also involve induction of interferon response to epigenetic derepression of the cellular ‘repeatome’. Moreover, we observed that another type of drugs decondensing chromatin, HDAC inhibitor, also induces TRAIN. Thus, we proposed that TRAIN may be one of the mechanisms ensuring epigenetic integrity of mammalian cells via elimination of cells with desilenced chromatin.
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spelling pubmed-58158522018-02-22 TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells Leonova, Katerina Safina, Alfiya Nesher, Elimelech Sandlesh, Poorva Pratt, Rachel Burkhart, Catherine Lipchick, Brittany Gitlin, Ilya Frangou, Costakis Koman, Igor Wang, Jianmin Kirsanov, Kirill Yakubovskaya, Marianna G Gudkov, Andrei V Gurova, Katerina eLife Cell Biology Cellular responses to the loss of genomic stability are well-established, while how mammalian cells respond to chromatin destabilization is largely unknown. We previously found that DNA demethylation on p53-deficient background leads to transcription of repetitive heterochromatin elements, followed by an interferon response, a phenomenon we named TRAIN (Transcription of Repeats Activates INterferon). Here, we report that curaxin, an anticancer small molecule, destabilizing nucleosomes via disruption of histone/DNA interactions, also induces TRAIN. Furthermore, curaxin inhibits oncogene-induced transformation and tumor growth in mice in an interferon-dependent manner, suggesting that anticancer activity of curaxin, previously attributed to p53-activation and NF-kappaB-inhibition, may also involve induction of interferon response to epigenetic derepression of the cellular ‘repeatome’. Moreover, we observed that another type of drugs decondensing chromatin, HDAC inhibitor, also induces TRAIN. Thus, we proposed that TRAIN may be one of the mechanisms ensuring epigenetic integrity of mammalian cells via elimination of cells with desilenced chromatin. eLife Sciences Publications, Ltd 2018-02-05 /pmc/articles/PMC5815852/ /pubmed/29400649 http://dx.doi.org/10.7554/eLife.30842 Text en © 2018, Leonova et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Leonova, Katerina
Safina, Alfiya
Nesher, Elimelech
Sandlesh, Poorva
Pratt, Rachel
Burkhart, Catherine
Lipchick, Brittany
Gitlin, Ilya
Frangou, Costakis
Koman, Igor
Wang, Jianmin
Kirsanov, Kirill
Yakubovskaya, Marianna G
Gudkov, Andrei V
Gurova, Katerina
TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells
title TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells
title_full TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells
title_fullStr TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells
title_full_unstemmed TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells
title_short TRAIN (Transcription of Repeats Activates INterferon) in response to chromatin destabilization induced by small molecules in mammalian cells
title_sort train (transcription of repeats activates interferon) in response to chromatin destabilization induced by small molecules in mammalian cells
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5815852/
https://www.ncbi.nlm.nih.gov/pubmed/29400649
http://dx.doi.org/10.7554/eLife.30842
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