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Sirt3 protects in vitro–fertilized mouse preimplantation embryos against oxidative stress–induced p53-mediated developmental arrest

机译:Sirt3保护体外受精的小鼠植入前胚胎免受氧化应激诱导的p53介导的发育停滞

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摘要

Sirtuins are a phylogenetically conserved NAD+-dependent protein deacetylase/ADP-ribosyltransferase family implicated in diverse biological processes. Several family members localize to mitochondria, the function of which is thought to determine the developmental potential of preimplantation embryos. We have therefore characterized the role of sirtuins in mouse preimplantation development under in vitro culture conditions. All sirtuin members were expressed in eggs, and their expression gradually decreased until the blastocyst stage. Treatment with sirtuin inhibitors resulted in increased intracellular ROS levels and decreased blastocyst formation. These effects were recapitulated by siRNA-induced knockdown of Sirt3, which is involved in mitochondrial energy metabolism, and in Sirt3–/– embryos. The antioxidant N-acetyl-L-cysteine and low-oxygen conditions rescued these adverse effects. When Sirt3-knockdown embryos were transferred to pseudopregnant mice after long-term culture, implantation and fetal growth rates were decreased, indicating that Sirt3-knockdown embryos were sensitive to in vitro conditions and that the effect was long lasting. Further experiments revealed that maternally derived Sirt3 was critical. Sirt3 inactivation increased mitochondrial ROS production, leading to p53 upregulation and changes in downstream gene expression. The inactivation of p53 improved the developmental outcome of Sirt3-knockdown embryos, indicating that the ROS-p53 pathway was responsible for the developmental defects. These results indicate that Sirt3 plays a protective role in preimplantation embryos against stress conditions during in vitro fertilization and culture.
机译:Sirtuins是系统发育上保守的NAD + 依赖蛋白脱乙酰酶/ ADP-核糖基转移酶家族,涉及多种生物学过程。几个家庭成员位于线粒体,其功能被认为决定了植入前胚胎的发育潜力。因此,我们已经表征了沉默调节蛋白在体外培养条件下在小鼠植入前发育中的作用。所有sirtuin成员都在卵中表达,并且它们的表达逐渐降低直至胚泡期。 sirtuin抑制剂的治疗导致细胞内ROS水平升高和胚泡形成减少。 siRNA诱导的Sirt3的敲低(与线粒体能量代谢有关)以及Sirt3 – / – 胚胎中都概括了这些作用。抗氧化剂N-乙酰基-L-半胱氨酸和低氧条件挽救了这些不利影响。长期培养后将Sirt3基因敲低的胚胎转移到假孕小鼠时,植入和胎儿的生长速度降低,这表明Sirt3基因敲低的胚胎对体外条件敏感,并且这种作用持久。进一步的实验表明,母体来源的Sirt3至关重要。 Sirt3失活增加线粒体ROS的产生,导致p53上调和下游基因表达的变化。 p53的失活改善了Sirt3-敲低胚胎的发育结果,表明ROS-p53途径是造成发育缺陷的原因。这些结果表明Sirt3在植入前的胚胎中在体外受精和培养过程中对应激条件具有保护作用。

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