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SIRT2 Inhibition Results in Meiotic Arrest Mitochondrial Dysfunction and Disturbance of Redox Homeostasis during Bovine Oocyte Maturation

机译:SIRT2抑制导致牛卵母细胞成熟过程中的减数分裂阻滞线粒体功能障碍和氧化还原稳态的干扰。

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摘要

SIRT2, a member of the sirtuin family, has been recently shown to exert important effects on mitosis and/or metabolism. However, its roles in oocyte maturation have not been fully clarified. In this study, SIRT2, located in the cytoplasm and nucleus, was found in abundance in the meiotic stage, and its expression gradually decreased until the blastocyst stage. Treatment with SIRT2 inhibitors resulted in the prevention of oocyte maturation and the formation of poor-quality oocytes. By performing confocal scanning and quantitative analysis, the results showed that SIRT2 inhibition induced prominent defects in spindle/chromosome morphology, and led to the hyperacetylation of α-tubulin and H4K16. In particular, SIRT2 inhibition impeded cytoplasmic maturation by disturbing the normal distribution of cortical granules, endoplasmic reticulum, and mitochondria during oocyte meiosis. Meanwhile, exposure to SirReal2 led to elevated intracellular reactive oxygen species (ROS) accumulation, low ATP production, and reduced mitochondrial membrane potential in oocytes. Further analysis revealed that SIRT2 inhibition modulated mitochondrial biogenesis and dynamics via the downregulation of TFAM and Mfn2, and the upregulation of DRP1. Mechanistically, SIRT2 inhibition blocked the nuclear translocation of FoxO3a by increasing FoxO3a acetylation, thereby downregulating the expression of FoxO3a-dependent antioxidant genes SOD2 and Cat. These results provide insights into the potential mechanisms by which SIRT2-dependent deacetylation activity exerts its effects on oocyte quality.
机译:SIRT2,sirtuin家族的成员,最近已显示出对有丝分裂和/或新陈代谢起重要作用。但是,其在卵母细胞成熟中的作用尚未完全阐明。在这项研究中,位于细胞质和细胞核中的SIRT2在减数分裂阶段大量存在,并且其表达逐渐降低直至胚泡阶段。使用SIRT2抑制剂进行治疗可防止卵母细胞成熟并形成劣质卵母细胞。通过共聚焦扫描和定量分析,结果表明SIRT2抑制引起纺锤体/染色体形态的显着缺陷,并导致α-微管蛋白和H4K16的过度乙酰化。特别是,SIRT2抑制通过扰乱卵母细胞减数分裂过程中皮质颗粒,内质网和线粒体的正态分布来阻止细胞质成熟。同时,暴露于SirReal2会导致卵母细胞中细胞内活性氧(ROS)积累增加,ATP生成量降低和线粒体膜电位降低。进一步的分析表明,SIRT2抑制通过TFAM和Mfn2的下调以及DRP1的上调来调节线粒体的生物发生和动力学。从机制上讲,SIRT2抑制通过增加FoxO3a的乙酰化作用来阻止FoxO3a的核易位,从而下调FoxO3a依赖性抗氧化剂基因SOD2和Cat的表达。这些结果提供了对SIRT2依赖性脱乙酰基活性通过其对卵母细胞质量的影响的潜在机制的见解。

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