Nagaoka Katsuya, Hino Shinjiro, Sakamoto Akihisa, Anan Kotaro, Takase Ryuta, Umehara Takashi, Yokoyama Shigeyuki, Sasaki Yutaka, Nakao Mitsuyoshi
Department of Medical Cell Biology, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, Japan Department of Gastroenterology and Hepatology, Graduate School of Medical Sciences, Kumamoto University, Kumamoto, Japan.
Department of Medical Cell Biology, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, Japan
Mol Cell Biol. 2015 Apr;35(7):1068-80. doi: 10.1128/MCB.01404-14. Epub 2015 Jan 26.
Cells link environmental fluctuations, such as nutrition, to metabolic remodeling. Epigenetic factors are thought to be involved in such cellular processes, but the molecular basis remains unclear. Here we report that the lysine-specific demethylase 2 (LSD2) suppresses the flux and metabolism of lipids to maintain the energy balance in hepatic cells. Using transcriptome and chromatin immunoprecipitation-sequencing analyses, we revealed that LSD2 represses the genes involved in lipid influx and metabolism through demethylation of histone H3K4. Selective recruitment of LSD2 at lipid metabolism gene loci was mediated in part by a stress-responsive transcription factor, c-Jun. Intriguingly, LSD2 depletion increased the intracellular levels of many lipid metabolites, which was accompanied by an increased susceptibility to toxic cell damage in response to fatty acid exposure. Our data demonstrate that LSD2 maintains metabolic plasticity under fluctuating environment in hepatocytes by mediating the cross talk between the epigenome and metabolism.
细胞将营养等环境波动与代谢重塑联系起来。表观遗传因子被认为参与此类细胞过程,但其分子基础仍不清楚。在此,我们报告赖氨酸特异性去甲基化酶2(LSD2)抑制脂质通量和代谢以维持肝细胞中的能量平衡。通过转录组和染色质免疫沉淀测序分析,我们发现LSD2通过组蛋白H3K4去甲基化抑制参与脂质流入和代谢的基因。LSD2在脂质代谢基因位点的选择性募集部分由应激反应转录因子c-Jun介导。有趣的是,LSD2缺失增加了许多脂质代谢物的细胞内水平,这伴随着对脂肪酸暴露引起的毒性细胞损伤的易感性增加。我们的数据表明,LSD2通过介导表观基因组与代谢之间的相互作用,在肝细胞波动的环境中维持代谢可塑性。