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Accelerated Ovarian Failure Induced by 4-Vinyl Cyclohexene Diepoxide in Nrf2 Null Mice

机译:Nrf2空小鼠中4-乙烯基环己烯二环氧化物诱发的卵巢加速衰竭

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摘要

Genetic and biochemical analyses have uncovered an essential role for nuclear factor erythroid 2-related factor 2 (Nrf2) in regulating phase II xenobiotic metabolism and antioxidant response. Here we show that Nrf2 protects against the ovarian toxicity of 4-vinylcyclohexene diepoxide (VCD) in mice. Nrf2−/− female mice exposed to VCD exhibit an age-dependent decline in reproduction leading to secondary infertility accompanied by hypergonadotropic hypogonadism after 30 weeks of age. VCD is shown to selectively destroy small ovarian follicles, resulting in early depletion of functional follicles. Treatment with VCD induces apoptotic death in cultured cells and in ovarian follicles, suggesting apoptosis as a mechanism of follicle loss. Loss of Nrf2 function blocks the basal and inducible expression of microsomal epoxide hydrolase, a key enzyme in the detoxification of VCD, and increases the oxidative stress in cells that is further exacerbated by VCD. Foxo3a, a repressor in the early stages of follicle activation, displays reduced expression in Nrf2−/− ovaries, causing accelerated growth of follicles in the absence of exposure to exogenous chemicals. Furthermore, Foxo3a is degraded through the 26S proteasome pathway in untreated cells and is induced by VCD via both Nrf2-dependent transcription and protein stabilization. This study demonstrates that Nrf2 serves as an essential sensor and regulator of chemical homeostasis in ovarian cells, protecting the cells from toxic chemicals by controlling metabolic detoxification, reactive oxygen species defense, and Foxo3a expression. In addition, these findings raise the possibility that exposure to environmental or occupational ovotoxicants plays a role in the premature ovarian failure commonly associated with infertility and premature aging in women.
机译:遗传和生化分析已揭示核因子红系2相关因子2(Nrf2)在调节II期异源生物代谢和抗氧化反应中的重要作用。在这里,我们显示Nrf2可以保护小鼠免受4-乙烯基环己烯二环氧化合物(VCD)的卵巢毒性。暴露于VCD的Nrf2 -/-雌性小鼠在30周龄后表现出年龄依赖性的生殖衰退,导致继发性不育并伴有促性腺激素性性腺功能减退。 VCD显示出选择性破坏卵巢小卵泡,导致功能性卵泡尽早耗尽。 VCD处理可在培养的细胞和卵巢卵泡中诱导凋亡性死亡,提示凋亡是卵泡丧失的一种机制。 Nrf2功能的丧失会阻止微粒体环氧化物水解酶的基础表达和诱导型表达,后者是VCD解毒的关键酶,并增加了细胞的氧化应激,而VCD进一步加剧了这种氧化应激。 Foxo3a是卵泡活化早期的阻遏物,在Nrf2 -/-卵巢中表达降低,从而导致卵泡在不接触外源化学物质的情况下加速生长。此外,Foxo3a在未处理的细胞中通过26S蛋白酶体途径降解,并由VCD通过依赖Nrf2的转录和蛋白质稳定作用诱导。这项研究表明,Nrf2可以作为卵巢细胞化学稳态的重要传感器和调节剂,通过控制代谢排毒,活性氧防御和Foxo3a表达来保护细胞免受有毒化学物质的侵害。此外,这些发现还增加了暴露于环境或职业性卵毒物中的可能性,这些作用通常在卵巢早衰中起作用,而卵巢早衰通常与女性的不育和早衰有关。

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