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The Hypoxia-Inducible Epigenetic Regulators Jmjd1a and G9a Provide a Mechanistic Link between Angiogenesis and Tumor Growth
Author(s) -
Jun Ueda,
Jolene Caifeng Ho,
Kian Leong Lee,
Shojiro Kitajima,
Henry Yang,
Wendi Sun,
Noriko Fukuhara,
Norazean Zaiden,
Shing Leng Chan,
Makoto Tachibana,
Yoichi Shinkai,
Hiroyuki Kato,
Lorenz Poellinger
Publication year - 2014
Publication title -
molecular and cellular biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.14
H-Index - 327
eISSN - 1067-8824
pISSN - 0270-7306
DOI - 10.1128/mcb.00099-14
Subject(s) - biology , cancer research , epigenetics , demethylase , histone methyltransferase , histone h3 , tumor progression , microbiology and biotechnology , cell growth , angiogenesis , ezh2 , histone , downregulation and upregulation , regulation of gene expression , genetics , cancer , gene
Hypoxia promotes stem cell maintenance and tumor progression, but it remains unclear how it regulates long-term adaptation toward these processes. We reveal a striking downregulation of the hypoxia-inducible histone H3 lysine 9 (H3K9) demethylase JMJD1A as a hallmark of clinical human germ cell-derived tumors, such as seminomas, yolk sac tumors, and embryonal carcinomas. Jmjd1a was not essential for stem cell self-renewal but played a crucial role as a tumor suppressor in opposition to the hypoxia-regulated oncogenic H3K9 methyltransferase G9a. Importantly, loss ofJmjd1a resulted in increased tumor growth, whereas loss ofG9a produced smaller tumors. Pharmacological inhibition of G9a also resulted in attenuation of tumor growth, offering a novel therapeutic strategy for germ cell-derived tumors. Finally, Jmjd1a and G9a drive mutually opposing expression of the antiangiogenic factor genesRobo4 ,Igfbp4 ,Notch4 , andTfpi accompanied by changes in H3K9 methylation status. Thus, we demonstrate a novel mechanistic link whereby hypoxia-regulated epigenetic changes are instrumental for the control of tumor growth through coordinated dysregulation of antiangiogenic gene expression.

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