| Literature DB >> 19878873 |
Qing Zhang1, Jinming Gu, Lianjie Li, Jiayun Liu, Biao Luo, Hiu-Wing Cheung, Jesse S Boehm, Min Ni, Christoph Geisen, David E Root, Kornelia Polyak, Myles Brown, Andrea L Richardson, William C Hahn, William G Kaelin, Archana Bommi-Reddy.
Abstract
2-Oxoglutarate-dependent dioxygenases, including the EglN prolyl hydroxylases that regulate HIF, can be inhibited with drug-like molecules. EglN2 is estrogen inducible in breast carcinoma cells and the lone Drosophila EglN interacts genetically with Cyclin D1. Although EglN2 is a nonessential gene, we found that EglN2 inactivation decreases Cyclin D1 levels and suppresses mammary gland proliferation in vivo. Regulation of Cyclin D1 is a specific attribute of EglN2 among the EglN proteins and is HIF independent. Loss of EglN2 catalytic activity inhibits estrogen-dependent breast cancer tumorigenesis and can be rescued by exogenous Cyclin D1. EglN2 depletion also impairs the fitness of lung, brain, and hematopoietic cancer lines. These findings support the exploration of EglN2 inhibitors as therapeutics for estrogen-dependent breast cancer and other malignancies.Entities:
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Year: 2009 PMID: 19878873 PMCID: PMC2788761 DOI: 10.1016/j.ccr.2009.09.029
Source DB: PubMed Journal: Cancer Cell ISSN: 1535-6108 Impact factor: 31.743