Department of Gastroenterology, Graduate School of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8655, Japan.
Carcinogenesis. 2013 Oct;34(10):2380-8. doi: 10.1093/carcin/bgt174. Epub 2013 May 22.
Alterations in genes coding for histone modifiers are found in human cancers, suggesting that histone modification is involved in malignant features of neoplastic cells. This study showed that a histone demethylase KDM4C is significant for colonosphere formation by mediating the cross talk between oncogenic pathways through a feed-forward mechanism. The expression of KDM4C gene was increased in spheres from colorectal cancer (CRC) cells and the knockdown (KD) of KDM4C eliminated colonosphere formation. We found that the KD of β-catenin, an important oncogenic factor in CRC, resulted in not only decreased sphere formation but also impaired upregulation of KDM4C gene in spheres. β-Catenin bound to the KDM4C promoter, suggesting that KDM4C is involved in the sphere-forming ability downstream of β-catenin in CRC cells. Microarray analysis identified the JAG1 gene that codes for a notch ligand Jagged1 responsible for sphere formation as a target of KDM4C. KDM4C KD decreased the expression of JAG1 gene, and the downregulation of JAG1 gene recapitulated the impaired colonosphere formation. JAG1 is also a target of β-catenin, and chromatin immunoprecipitation analysis showed the binding of β-catenin and KDM4C onto the JAG1 promoter during colonosphere formation. Importantly, KDM4C KD ruined the recruitment of β-catenin onto the JAG1 promoter independently of the H3-K9 methylation status and blunted JAG1 expression during sphere formation. These data indicate that KDM4C maintains the sphere-forming capacity in CRCs by mediating the β-catenin-dependent transcription of JAG1 in a feed-forward manner.
组蛋白修饰酶基因的改变存在于人类癌症中,提示组蛋白修饰参与肿瘤细胞的恶性特征。本研究表明,组蛋白去甲基化酶 KDM4C 通过正反馈机制介导致癌途径的串扰,对结肠球形成具有重要意义。KDM4C 基因在结直肠癌细胞球体中的表达增加,KDM4C 的敲低(KD)消除了结肠球形成。我们发现,CRC 中重要的致癌因子β-连环蛋白(β-catenin)的 KD 不仅导致球体形成减少,而且还损害了球体中 KDM4C 基因的上调。β-catenin 与 KDM4C 启动子结合,表明 KDM4C 参与 CRC 细胞中 β-catenin 下游的球体形成能力。微阵列分析确定编码 Notch 配体 Jagged1 的 JAG1 基因为 KDM4C 的靶点,Jagged1 负责球体形成。KDM4C KD 降低了 JAG1 基因的表达,JAG1 基因的下调重现了受损的结肠球形成。JAG1 也是 β-catenin 的靶点,染色质免疫沉淀分析显示,在结肠球形成过程中,β-catenin 和 KDM4C 结合到 JAG1 启动子上。重要的是,KDM4C KD 破坏了 β-catenin 独立于 H3-K9 甲基化状态招募到 JAG1 启动子上,并在球体形成过程中削弱了 JAG1 的表达。这些数据表明,KDM4C 通过介导 JAG1 的 β-catenin 依赖性转录,以正反馈的方式维持 CRC 中的球体形成能力。