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Lin28 enhances tissue repair by reprogramming cellular metabolism

机译:Lin28通过重新编程细胞代谢来增强组织修复

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Regeneration capacity declines with age, but why juvenile organisms show enhanced tissue repair remains unexplained. Lin28a, a highly conserved RNA-binding protein expressed during embryogenesis, plays roles in development, pluripotency, and metabolism. To determine whether Lin28a might influence tissue repair in adults, we engineered the reactivation of Lin28a expression in several models of tissue injury. Lin28a reactivation improved hair regrowth by promoting anagen in hair follicles and accelerated regrowth of cartilage, bone, and mesenchyme after ear and digit injuries. Lin28a inhibits let-7 microRNA biogenesis; however, let-7 repression was necessary but insufficient to enhance repair. Lin28a bound to and enhanced the translation of mRNAs for several metabolic enzymes, thereby increasing glycolysis and oxidative phosphorylation (OxPhos). Lin28a-mediated enhancement of tissue repair was negated by OxPhos inhibition, whereas a pharmacologically induced increase in OxPhos enhanced repair. Thus, Lin28a enhances tissue repair in some adult tissues by reprogramming cellular bioenergetics. PaperClip
机译:再生能力会随着年龄的增长而下降,但是为何幼生物体显示出增强的组织修复作用尚无法解释。 Lin28a是在胚胎发生过程中表达的高度保守的RNA结合蛋白,在发育,多能性和代谢中发挥作用。为了确定Lin28a是否可能影响成年人的组织修复,我们设计了几种组织损伤模型中Lin28a表达的重新激活。 Lin28a的活化通过促进毛囊中的生长期促进毛发再生,并在耳朵和指骨受伤后加速软骨,骨骼和间充质的再生。 Lin28a抑制let-7 microRNA生物发生;但是,let-7抑制是必要的,但不足以增强修复作用。 Lin28a结合并增强了几种代谢酶的mRNA翻译,从而增加了糖酵解作用和氧化磷酸化作用(OxPhos)。 Lin28a介导的组织修复增强被OxPhos抑制所抵消,而药理学上增加的OxPhos增强了修复。因此,Lin28a通过重新编程细胞生物能学来增强某些成人组织的组织修复。回形针

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