Center for Reproductive Medicine and Obstetrics and Gynecology, Nanjing Drum Tower Hospital, the Affiliated Hospital of Nanjing University Medical School, Nanjing, China.
Center for Molecular Reproductive Medicine, Nanjing University, Nanjing, China.
DNA Cell Biol. 2022 Dec;41(12):1026-1037. doi: 10.1089/dna.2022.0449. Epub 2022 Nov 17.
Oxidative stress leads to ovarian functional decline by inducing granulosa cell (GC) apoptosis. Circular RNA circFoxo3 acts as a critical factor in regulating cell cycle and apoptosis, and cellular senescence in tumor cells. However, function of circFoxo3 is little understood in oxidative stress-induced injury of follicular GCs. In this study, we aimed to illustrate the regulation pattern of circFoxo3 in GCs under oxidative stress. CircFoxo3 was confirmed to be expressed in both human and mouse GCs by amplification with divergent primers and sequencing. and ovarian oxidative stress model, the expression of circFoxo3, FOXO3 protein, and its downstream targets were examined by quantitative real-time PCR and Western blotting, respectively. Knockdown of circFoxo3 was performed to evaluate the effects of circFoxo3-mediated GC apoptosis . RNA pull-down was used to discover the protein that interacted with circFoxo3 so as to illustrate the mechanism of circFoxo3 in GCs. Our results demonstrated that circFoxo3 was significantly upregulated in hydrogen peroxide (HO)-treated GCs and a 3-nitropropionic acid (3-NP)-induced mouse model of ovarian oxidative stress. Protein level of transcriptional factor FOXO3 was also remarkably increased in both and oxidative stress model, but mRNA expression revealed no significant difference. Knockdown of endogenous circFoxo3 downregulated FOXO3 protein level and blocked HO-induced cell apoptosis. CircFoxo3 could pull down high levels of MDM2 protein that induced FOXO3 ubiquitination and degradation. Furthermore, knockdown of MDM2 and circFoxo3 showed remarkably higher level of apoptosis when compared with the knockdown of circFoxo3 alone. Our study suggested that circFoxo3 regulated FOXO3 protein level in GCs by reducing interactions between FOXO3 and MDM2. In conclusion, circFoxo3 was positively associated with FOXO3 protein and jointly played crucial roles in mediating GC apoptosis induced by oxidative stress.
氧化应激通过诱导颗粒细胞(GC)凋亡导致卵巢功能下降。环状 RNA circFoxo3 作为调节肿瘤细胞细胞周期和凋亡以及细胞衰老的关键因素。然而,circFoxo3 在卵泡 GC 氧化应激损伤中的功能知之甚少。在这项研究中,我们旨在阐明氧化应激下 GC 中 circFoxo3 的调节模式。通过使用分歧引物和测序扩增,证实 circFoxo3 在人和小鼠 GC 中表达。通过建立卵巢氧化应激模型,分别通过定量实时 PCR 和 Western blot 检测 circFoxo3、FOXO3 蛋白及其下游靶标。通过 circFoxo3 介导的 GC 凋亡,进行 circFoxo3 敲低实验来评估 circFoxo3 的作用。通过 RNA 下拉实验发现与 circFoxo3 相互作用的蛋白,以阐明 circFoxo3 在 GC 中的作用机制。我们的结果表明,过氧化氢(HO)处理的 GC 和 3-硝基丙酸(3-NP)诱导的卵巢氧化应激小鼠模型中 circFoxo3 显著上调。两种氧化应激模型中,转录因子 FOXO3 的蛋白水平也显著增加,但 mRNA 表达没有明显差异。内源性 circFoxo3 的敲低下调了 FOXO3 蛋白水平,并阻断了 HO 诱导的细胞凋亡。circFoxo3 可以下拉高水平的 MDM2 蛋白,诱导 FOXO3 泛素化和降解。此外,与单独敲低 circFoxo3 相比,敲低 MDM2 和 circFoxo3 显示出更高水平的凋亡。我们的研究表明,circFoxo3 通过减少 FOXO3 和 MDM2 之间的相互作用来调节 GC 中的 FOXO3 蛋白水平。总之,circFoxo3 与 FOXO3 蛋白呈正相关,共同在介导氧化应激诱导的 GC 凋亡中发挥关键作用。