The KDM3A–KLF2–IRF4 axis maintains myeloma cell survival

Several histone modifiers have been implicated in the survival of multiple myeloma cells. Here, the authors reveal a role for the histone demethylase KDM3A in the survival of this haematologic cancer, and show that mechanistically KDM3A removes H3K9 methylation from the promoters of KLF2 and IRF4, g...

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Autores principales: Hiroto Ohguchi, Teru Hideshima, Manoj K. Bhasin, Gullu T. Gorgun, Loredana Santo, Michele Cea, Mehmet K. Samur, Naoya Mimura, Rikio Suzuki, Yu-Tzu Tai, Ruben D. Carrasco, Noopur Raje, Paul G. Richardson, Nikhil C. Munshi, Hideo Harigae, Takaomi Sanda, Juro Sakai, Kenneth C. Anderson
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/20b2f18e02d546e98af32ec37b4cedf8
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spelling oai:doaj.org-article:20b2f18e02d546e98af32ec37b4cedf82021-12-02T16:49:41ZThe KDM3A–KLF2–IRF4 axis maintains myeloma cell survival10.1038/ncomms102582041-1723https://doaj.org/article/20b2f18e02d546e98af32ec37b4cedf82016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10258https://doaj.org/toc/2041-1723Several histone modifiers have been implicated in the survival of multiple myeloma cells. Here, the authors reveal a role for the histone demethylase KDM3A in the survival of this haematologic cancer, and show that mechanistically KDM3A removes H3K9 methylation from the promoters of KLF2 and IRF4, genes essential for myeloma cell survival.Hiroto OhguchiTeru HideshimaManoj K. BhasinGullu T. GorgunLoredana SantoMichele CeaMehmet K. SamurNaoya MimuraRikio SuzukiYu-Tzu TaiRuben D. CarrascoNoopur RajePaul G. RichardsonNikhil C. MunshiHideo HarigaeTakaomi SandaJuro SakaiKenneth C. AndersonNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-15 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hiroto Ohguchi
Teru Hideshima
Manoj K. Bhasin
Gullu T. Gorgun
Loredana Santo
Michele Cea
Mehmet K. Samur
Naoya Mimura
Rikio Suzuki
Yu-Tzu Tai
Ruben D. Carrasco
Noopur Raje
Paul G. Richardson
Nikhil C. Munshi
Hideo Harigae
Takaomi Sanda
Juro Sakai
Kenneth C. Anderson
The KDM3A–KLF2–IRF4 axis maintains myeloma cell survival
description Several histone modifiers have been implicated in the survival of multiple myeloma cells. Here, the authors reveal a role for the histone demethylase KDM3A in the survival of this haematologic cancer, and show that mechanistically KDM3A removes H3K9 methylation from the promoters of KLF2 and IRF4, genes essential for myeloma cell survival.
format article
author Hiroto Ohguchi
Teru Hideshima
Manoj K. Bhasin
Gullu T. Gorgun
Loredana Santo
Michele Cea
Mehmet K. Samur
Naoya Mimura
Rikio Suzuki
Yu-Tzu Tai
Ruben D. Carrasco
Noopur Raje
Paul G. Richardson
Nikhil C. Munshi
Hideo Harigae
Takaomi Sanda
Juro Sakai
Kenneth C. Anderson
author_facet Hiroto Ohguchi
Teru Hideshima
Manoj K. Bhasin
Gullu T. Gorgun
Loredana Santo
Michele Cea
Mehmet K. Samur
Naoya Mimura
Rikio Suzuki
Yu-Tzu Tai
Ruben D. Carrasco
Noopur Raje
Paul G. Richardson
Nikhil C. Munshi
Hideo Harigae
Takaomi Sanda
Juro Sakai
Kenneth C. Anderson
author_sort Hiroto Ohguchi
title The KDM3A–KLF2–IRF4 axis maintains myeloma cell survival
title_short The KDM3A–KLF2–IRF4 axis maintains myeloma cell survival
title_full The KDM3A–KLF2–IRF4 axis maintains myeloma cell survival
title_fullStr The KDM3A–KLF2–IRF4 axis maintains myeloma cell survival
title_full_unstemmed The KDM3A–KLF2–IRF4 axis maintains myeloma cell survival
title_sort kdm3a–klf2–irf4 axis maintains myeloma cell survival
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/20b2f18e02d546e98af32ec37b4cedf8
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