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DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling

Epigenetic alterations play an important role in the pathogenesis in multiple myeloma, but their biological and clinical relevance is not fully understood. Here, we show that DOT1L, which catalyzes methylation of histone H3 lysine 79, is required for myeloma cell survival. DOT1L expression levels we...

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Autores principales: Ishiguro, Kazuya, Kitajima, Hiroshi, Niinuma, Takeshi, Ishida, Tadao, Maruyama, Reo, Ikeda, Hiroshi, Hayashi, Toshiaki, Sasaki, Hajime, Wakasugi, Hideki, Nishiyama, Koyo, Shindo, Tetsuya, Yamamoto, Eiichiro, Kai, Masahiro, Sasaki, Yasushi, Tokino, Takashi, Nakase, Hiroshi, Suzuki, Hiromu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ferrata Storti Foundation 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312027/
https://www.ncbi.nlm.nih.gov/pubmed/30171029
http://dx.doi.org/10.3324/haematol.2018.191262
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author Ishiguro, Kazuya
Kitajima, Hiroshi
Niinuma, Takeshi
Ishida, Tadao
Maruyama, Reo
Ikeda, Hiroshi
Hayashi, Toshiaki
Sasaki, Hajime
Wakasugi, Hideki
Nishiyama, Koyo
Shindo, Tetsuya
Yamamoto, Eiichiro
Kai, Masahiro
Sasaki, Yasushi
Tokino, Takashi
Nakase, Hiroshi
Suzuki, Hiromu
author_facet Ishiguro, Kazuya
Kitajima, Hiroshi
Niinuma, Takeshi
Ishida, Tadao
Maruyama, Reo
Ikeda, Hiroshi
Hayashi, Toshiaki
Sasaki, Hajime
Wakasugi, Hideki
Nishiyama, Koyo
Shindo, Tetsuya
Yamamoto, Eiichiro
Kai, Masahiro
Sasaki, Yasushi
Tokino, Takashi
Nakase, Hiroshi
Suzuki, Hiromu
author_sort Ishiguro, Kazuya
collection PubMed
description Epigenetic alterations play an important role in the pathogenesis in multiple myeloma, but their biological and clinical relevance is not fully understood. Here, we show that DOT1L, which catalyzes methylation of histone H3 lysine 79, is required for myeloma cell survival. DOT1L expression levels were higher in monoclonal gammopathy of undetermined significance and smoldering multiple myeloma than in normal plasma cells. Treatment with a DOT1L inhibitor induced cell cycle arrest and apoptosis in myeloma cells, and strongly suppressed cell proliferation in vitro. The anti-myeloma effect of DOT1L inhibition was confirmed in a mouse xenograft model. Chromatin immunoprecipitation-sequencing and microarray analysis revealed that DOT1L inhibition downregulated histone H3 lysine 79 dimethylation and expression of IRF4-MYC signaling genes in myeloma cells. In addition, DOT1L inhibition upregulated genes associated with immune responses and interferon signaling. Myeloma cells with histone modifier mutations or lower IRF4/MYC expression were less sensitive to DOT1L inhibition, but with prolonged treatment, anti-proliferative effects were achieved in these cells. Our data suggest that DOT1L plays an essential role in the development of multiple myeloma and that DOT1L inhibition may provide new therapies for myeloma treatment.
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spelling pubmed-63120272019-01-04 DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling Ishiguro, Kazuya Kitajima, Hiroshi Niinuma, Takeshi Ishida, Tadao Maruyama, Reo Ikeda, Hiroshi Hayashi, Toshiaki Sasaki, Hajime Wakasugi, Hideki Nishiyama, Koyo Shindo, Tetsuya Yamamoto, Eiichiro Kai, Masahiro Sasaki, Yasushi Tokino, Takashi Nakase, Hiroshi Suzuki, Hiromu Haematologica Article Epigenetic alterations play an important role in the pathogenesis in multiple myeloma, but their biological and clinical relevance is not fully understood. Here, we show that DOT1L, which catalyzes methylation of histone H3 lysine 79, is required for myeloma cell survival. DOT1L expression levels were higher in monoclonal gammopathy of undetermined significance and smoldering multiple myeloma than in normal plasma cells. Treatment with a DOT1L inhibitor induced cell cycle arrest and apoptosis in myeloma cells, and strongly suppressed cell proliferation in vitro. The anti-myeloma effect of DOT1L inhibition was confirmed in a mouse xenograft model. Chromatin immunoprecipitation-sequencing and microarray analysis revealed that DOT1L inhibition downregulated histone H3 lysine 79 dimethylation and expression of IRF4-MYC signaling genes in myeloma cells. In addition, DOT1L inhibition upregulated genes associated with immune responses and interferon signaling. Myeloma cells with histone modifier mutations or lower IRF4/MYC expression were less sensitive to DOT1L inhibition, but with prolonged treatment, anti-proliferative effects were achieved in these cells. Our data suggest that DOT1L plays an essential role in the development of multiple myeloma and that DOT1L inhibition may provide new therapies for myeloma treatment. Ferrata Storti Foundation 2019-01 /pmc/articles/PMC6312027/ /pubmed/30171029 http://dx.doi.org/10.3324/haematol.2018.191262 Text en Copyright© 2019 Ferrata Storti Foundation Material published in Haematologica is covered by copyright. All rights are reserved to the Ferrata Storti Foundation. Use of published material is allowed under the following terms and conditions: https://creativecommons.org/licenses/by-nc/4.0/legalcode. Copies of published material are allowed for personal or internal use. Sharing published material for non-commercial purposes is subject to the following conditions: https://creativecommons.org/licenses/by-nc/4.0/legalcode, sect. 3. Reproducing and sharing published material for commercial purposes is not allowed without permission in writing from the publisher.
spellingShingle Article
Ishiguro, Kazuya
Kitajima, Hiroshi
Niinuma, Takeshi
Ishida, Tadao
Maruyama, Reo
Ikeda, Hiroshi
Hayashi, Toshiaki
Sasaki, Hajime
Wakasugi, Hideki
Nishiyama, Koyo
Shindo, Tetsuya
Yamamoto, Eiichiro
Kai, Masahiro
Sasaki, Yasushi
Tokino, Takashi
Nakase, Hiroshi
Suzuki, Hiromu
DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling
title DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling
title_full DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling
title_fullStr DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling
title_full_unstemmed DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling
title_short DOT1L inhibition blocks multiple myeloma cell proliferation by suppressing IRF4-MYC signaling
title_sort dot1l inhibition blocks multiple myeloma cell proliferation by suppressing irf4-myc signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312027/
https://www.ncbi.nlm.nih.gov/pubmed/30171029
http://dx.doi.org/10.3324/haematol.2018.191262
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