Nylander Vibe, Ingerslev Lars R, Andersen Emil, Fabre Odile, Garde Christian, Rasmussen Morten, Citirikkaya Kiymet, Bæk Josephine, Christensen Gitte L, Aznar Marianne, Specht Lena, Simar David, Barrès Romain
Faculty of Health and Medical Sciences, Novo Nordisk Foundation Center for Basic Metabolic Research, University of Copenhagen, Copenhagen, Denmark.
Department of Biomedical Sciences, University of Copenhagen, Copenhagen, Denmark.
Diabetes. 2016 Dec;65(12):3573-3584. doi: 10.2337/db16-0364. Epub 2016 Sep 20.
Exposure to ionizing radiation increases the risk of chronic metabolic disorders such as insulin resistance and type 2 diabetes later in life. We hypothesized that irradiation reprograms the epigenome of metabolic progenitor cells, which could account for impaired metabolism after cancer treatment. C57Bl/6 mice were treated with a single dose of irradiation and subjected to high-fat diet (HFD). RNA sequencing and reduced representation bisulfite sequencing were used to create transcriptomic and epigenomic profiles of preadipocytes and skeletal muscle satellite cells collected from irradiated mice. Mice subjected to total body irradiation showed alterations in glucose metabolism and, when challenged with HFD, marked hyperinsulinemia. Insulin signaling was chronically disrupted in skeletal muscle and adipose progenitor cells collected from irradiated mice and differentiated in culture. Epigenomic profiling of skeletal muscle and adipose progenitor cells from irradiated animals revealed substantial DNA methylation changes, notably for genes regulating the cell cycle, glucose/lipid metabolism, and expression of epigenetic modifiers. Our results show that total body irradiation alters intracellular signaling and epigenetic pathways regulating cell proliferation and differentiation of skeletal muscle and adipose progenitor cells and provide a possible mechanism by which irradiation used in cancer treatment increases the risk for metabolic disease later in life.
暴露于电离辐射会增加日后患慢性代谢紊乱疾病的风险,如胰岛素抵抗和2型糖尿病。我们推测,辐射会对代谢祖细胞的表观基因组进行重编程,这可能是癌症治疗后代谢受损的原因。对C57Bl/6小鼠进行单次辐射处理,然后给予高脂饮食(HFD)。利用RNA测序和简化代表性亚硫酸氢盐测序技术,对从受辐照小鼠收集的前脂肪细胞和骨骼肌卫星细胞进行转录组和表观基因组分析。接受全身照射的小鼠出现葡萄糖代谢改变,在给予高脂饮食后,出现明显的高胰岛素血症。从受辐照小鼠收集并在培养中分化的骨骼肌和脂肪祖细胞中,胰岛素信号长期受到干扰。对受辐照动物的骨骼肌和脂肪祖细胞进行表观基因组分析发现,DNA甲基化发生了显著变化,尤其是那些调控细胞周期、葡萄糖/脂质代谢以及表观遗传修饰因子表达的基因。我们的研究结果表明,全身照射会改变调节骨骼肌和脂肪祖细胞增殖与分化的细胞内信号传导和表观遗传途径,并为癌症治疗中使用的辐射增加日后患代谢性疾病风险提供了一种可能的机制。