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Inactivation of Lsd1 triggers senescence in trophoblast stem cells by induction of Sirt4

机译:Lsd1的失活通过诱导Sirt4触发滋养层干细胞的衰老

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摘要

Coordination of energy metabolism is essential for homeostasis of stem cells, whereas an imbalance in energy homeostasis causes disease and accelerated aging. Here we show that deletion or enzymatic inactivation of lysine-specific demethylase 1 (Lsd1) triggers senescence in trophoblast stem cells (TSCs). Genome-wide transcriptional profiling of TSCs following Lsd1 inhibition shows gene set enrichment of aging and metabolic pathways. Consistently, global metabolomic and phenotypic analyses disclose an unbalanced redox status, decreased glutamine anaplerosis and mitochondrial function. Loss of homeostasis is caused by increased expression of sirtuin 4 (Sirt4), a Lsd1-repressed direct target gene. Accordingly, Sirt4 overexpression in wild-type TSCs recapitulates the senescence phenotype initiated by Lsd1 deletion or inhibition. Inversely, absence of Lsd1 enzymatic activity concomitant with knockdown of Sirt4 reestablishes normal glutamine anaplerosis, redox balance and mitochondrial function. In conclusion, by repression of Sirt4, Lsd1 directs the epigenetic control of TSC immortality via maintenance of metabolic flexibility.
机译:能量代谢的协调对于干细胞的动态平衡至关重要,而能量动态平衡的失衡会导致疾病和加速衰老。在这里我们显示,赖氨酸特异性脱甲基酶1(Lsd1)的删除或酶失活触发了滋养层干细胞(TSCs)的衰老。 Lsd1抑制后,TSC的全基因组转录谱显示衰老和代谢途径的基因集丰富。一致地,全球代谢组学和表型分析显示氧化还原状态不平衡,谷氨酰胺过低和线粒体功能降低。稳态的丧失是由于Sirtuin 4(Sirt4)(一种受Lsd1抑制的直接靶基因)表达增加所致。因此,Sirt4在野生型TSCs中的过表达概括了Lsd1缺失或抑制引发的衰老表型。相反,缺少Lsd1酶促活性并降低Sirt4可恢复正常的谷氨酰胺过氧化物反应,氧化还原平衡和线粒体功能。总之,通过抑制Sirt4,Lsd1通过维持代谢灵活性来指导TSC永生性的表观遗传控制。

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