DNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation

DNMT3A mutations are known to cause acute myeloid leukaemia. Here, Koya et al. show that DNMT3A R882H mutation causes monoblastic transformation and haematopoietic stem cell accumulation in a methylation-independent manner, by suppressing the polycomb repressive complex 1, causing transcriptional si...

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Autores principales: Junji Koya, Keisuke Kataoka, Tomohiko Sato, Masashige Bando, Yuki Kato, Takako Tsuruta-Kishino, Hiroshi Kobayashi, Kensuke Narukawa, Hiroyuki Miyoshi, Katsuhiko Shirahige, Mineo Kurokawa
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/3b5a176a67f947c3b5e27931bbee2280
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spelling oai:doaj.org-article:3b5a176a67f947c3b5e27931bbee22802021-12-02T16:58:12ZDNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation10.1038/ncomms109242041-1723https://doaj.org/article/3b5a176a67f947c3b5e27931bbee22802016-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms10924https://doaj.org/toc/2041-1723DNMT3A mutations are known to cause acute myeloid leukaemia. Here, Koya et al. show that DNMT3A R882H mutation causes monoblastic transformation and haematopoietic stem cell accumulation in a methylation-independent manner, by suppressing the polycomb repressive complex 1, causing transcriptional silencing.Junji KoyaKeisuke KataokaTomohiko SatoMasashige BandoYuki KatoTakako Tsuruta-KishinoHiroshi KobayashiKensuke NarukawaHiroyuki MiyoshiKatsuhiko ShirahigeMineo KurokawaNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Junji Koya
Keisuke Kataoka
Tomohiko Sato
Masashige Bando
Yuki Kato
Takako Tsuruta-Kishino
Hiroshi Kobayashi
Kensuke Narukawa
Hiroyuki Miyoshi
Katsuhiko Shirahige
Mineo Kurokawa
DNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation
description DNMT3A mutations are known to cause acute myeloid leukaemia. Here, Koya et al. show that DNMT3A R882H mutation causes monoblastic transformation and haematopoietic stem cell accumulation in a methylation-independent manner, by suppressing the polycomb repressive complex 1, causing transcriptional silencing.
format article
author Junji Koya
Keisuke Kataoka
Tomohiko Sato
Masashige Bando
Yuki Kato
Takako Tsuruta-Kishino
Hiroshi Kobayashi
Kensuke Narukawa
Hiroyuki Miyoshi
Katsuhiko Shirahige
Mineo Kurokawa
author_facet Junji Koya
Keisuke Kataoka
Tomohiko Sato
Masashige Bando
Yuki Kato
Takako Tsuruta-Kishino
Hiroshi Kobayashi
Kensuke Narukawa
Hiroyuki Miyoshi
Katsuhiko Shirahige
Mineo Kurokawa
author_sort Junji Koya
title DNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation
title_short DNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation
title_full DNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation
title_fullStr DNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation
title_full_unstemmed DNMT3A R882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation
title_sort dnmt3a r882 mutants interact with polycomb proteins to block haematopoietic stem and leukaemic cell differentiation
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/3b5a176a67f947c3b5e27931bbee2280
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