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    Please use this identifier to cite or link to this item: http://ir.nhri.org.tw/handle/3990099045/9630


    Title: Lysine demethylase 2A promotes stemness and angiogenesis of breast cancer by upregulating Jagged1
    Authors: Chen, JY;Li, CF;Chu, PY;Lai, YS;Chen, CH;Jiang, SS;Hou, MF;Hung, WC
    Contributors: National Institute of Cancer Research
    Abstract: Alterations of histone methylation dynamically regulated by methyltransferases and demethylases are frequently found in human cancers. Here, we showed that expression of lysine demethylase 2A (KDM2A) is markedly increased in human breast cancer and its overexpression is associated with tumor progression and poor prognosis. Knockdown of KDM2A in breast cancer cells reduced proliferation but not viability. Gene set enrichment analysis revealed that inhibition of KDM2A down-regulates angiogenic genes with concurrent reduction of Jagged1 (JAG1), NOTCH1 and HEY1 in the NOTCH signaling. Chromatin immunoprecipitation- quantitative polymerase chain reaction (ChIP-qPCR) demonstrated the binding of KDM2A to the JAG1 promoter and the increase of methylation of Lys-36 of histone H3 (H3K36) in KDM2A-depleted MDA-MB-231 cells. Tumorsphere formation was significantly reduced in KDM2A-depleted cells which could be reversed by ectopic expression of JAG1. A selective KDM2A inhibitor daminozide also decreased the number of tumorsphere and the number of CD24-/CD44hi cells. In addition, daminozide acted synergistically with cisplatin in cell killing. We identified SOX2 as a direct transcriptional target of KDM2A to promote cancer stemness. Depletion of KDM2A in MDA-MB-231 cells attenuated NOTCH activation and tube formation in co-cultured endothelial cells. Two pro-angiogenic factors JAG1 and PDGFA are key mediators for KDM2A to enhance angiogenesis. Finally, inhibition of KDM2A significantly decreased tumor growth and angiogenesis in orthotopic animal experiments. Collectively, we conclude that KDM2A functions as an oncogene in breast cancer by upregulating JAG1 to promote stemness, chemoresistance and angiogenesis.
    Date: 2016-05
    Relation: Oncotarget. 2016 May;7(19):27689-27710.
    Link to: http://dx.doi.org/10.18632/oncotarget.8381
    Cited Times(WOS): https://www.webofscience.com/wos/woscc/full-record/WOS:000377741700060
    Cited Times(Scopus): http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=84968761386
    Appears in Collections:[洪文俊] 期刊論文
    [江士昇] 期刊論文

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