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组蛋白去甲基酶 JMJD1A 通过与缺氧诱导因子 1α 共激活增强糖酵解促进膀胱癌进展。

Histone demethylase JMJD1A promotes urinary bladder cancer progression by enhancing glycolysis through coactivation of hypoxia inducible factor 1α.

机构信息

State Key Laboratory of Cellular Stress Biology, Innovation Center for Cell Biology, School of Life Sciences, Xiamen University, Xiamen, China.

Xiamen City Key Laboratory of Biliary Tract Diseases, Chenggong Hospital of Xiamen University, Xiamen, China.

出版信息

Oncogene. 2017 Jul 6;36(27):3868-3877. doi: 10.1038/onc.2017.13. Epub 2017 Mar 6.

Abstract

High aerobic glycolysis not only provides energy to cancer cells, but also supports their anabolic growth. JMJD1A, a histone demethylase that specifically demethylates H3K9me1/2, is overexpressed in multiple cancers, including urinary bladder cancer (UBC). It is unclear whether JMJD1A could promote cancer cell growth through enhancing glycolysis. In this study, we found that downregulation of JMJD1A decreased UBC cell proliferation, colony formation and xenograft tumor growth. Knockdown of JMJD1A inhibited glycolysis by decreasing the expression of genes participated in glucose metabolism, including GLUT1, HK2, PGK1, PGM, LDHA and MCT4. Mechanistically, JMJD1A cooperated with hypoxia inducible factor 1α (HIF1α), an important transcription factor for glucose metabolism, to induce the glycolytic gene expression. JMJD1A was recruited to the promoter of glycolytic gene PGK1 to demethylate H3K9me2. However, the JMJD1A (H1120Y) mutant, which loses the demethylase activity, failed to cooperate with HIF1α to induce the glycolytic gene expression, and failed to demethylate H3K9me2 on PGK1 promoter, suggesting that the demethylase activity of JMJD1A is essential for its coactivation function for HIF1α. Inhibition of glycolysis through knocking down HIF1α or PGK1 decelerated JMJD1A-enhanced UBC cell growth. Consistent with these results, a positive correlation between JMJD1A and several key glycolytic genes in human UBC samples was established by analyzing a microarray-based gene expression profile. In conclusion, our study demonstrates that JMJD1A promotes UBC progression by enhancing glycolysis through coactivation of HIF1α, implicating that JMJD1A is a potential molecular target for UBC treatment.

摘要

高糖酵解不仅为癌细胞提供能量,还支持它们的合成代谢生长。JMJD1A 是一种组蛋白去甲基酶,特异性地去甲基化 H3K9me1/2,在多种癌症中过表达,包括膀胱癌 (UBC)。目前尚不清楚 JMJD1A 是否可以通过增强糖酵解来促进癌细胞生长。在这项研究中,我们发现下调 JMJD1A 可降低 UBC 细胞的增殖、集落形成和异种移植肿瘤生长。JMJD1A 的敲低抑制了糖酵解,降低了参与葡萄糖代谢的基因的表达,包括 GLUT1、HK2、PGK1、PGM、LDHA 和 MCT4。在机制上,JMJD1A 与缺氧诱导因子 1α(HIF1α)合作,HIF1α 是葡萄糖代谢的重要转录因子,诱导糖酵解基因表达。JMJD1A 被招募到糖酵解基因 PGK1 的启动子上,去甲基化 H3K9me2。然而,失去去甲基酶活性的 JMJD1A(H1120Y)突变体不能与 HIF1α 合作诱导糖酵解基因表达,也不能在 PGK1 启动子上去甲基化 H3K9me2,表明 JMJD1A 的去甲基酶活性对于其与 HIF1α 的共激活功能是必需的。通过敲低 HIF1α 或 PGK1 抑制糖酵解会减缓 JMJD1A 增强的 UBC 细胞生长。通过分析基于微阵列的基因表达谱,我们在人类 UBC 样本中建立了 JMJD1A 与几个关键糖酵解基因之间的正相关关系,结果一致。总之,我们的研究表明,JMJD1A 通过与 HIF1α 共同激活来增强糖酵解,促进 UBC 的进展,这表明 JMJD1A 是 UBC 治疗的潜在分子靶点。

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