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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >miR-15b induces premature ovarian failure in mice via inhibition of alpha-Klotho expression in ovarian granulosa cells
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miR-15b induces premature ovarian failure in mice via inhibition of alpha-Klotho expression in ovarian granulosa cells

机译:MiR-15B通过抑制卵巢颗粒细胞中的α-Klotho表达诱导小鼠的过早卵巢衰竭

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摘要

A thorough understanding of epigenetics regulatory mechanisms of premature ovarian failure (POF) is still lacking. Here, we found that cyclophosphamide induced significantly decrease in alpha-Klotho (Kl) expression in mouse ovarian granulosa cells (mOGCs), suggesting that cyclophosphamide inhibited Kl expression. Cyclophosphamide also significantly accelerated ageing and led to a decline in the pregnancy rate of C. elegans. We subsequently noted that the pathological condition exhibited by Kl(-/-) mice was similar to that observed in cyclophosphamide-induced POF mice. Furthermore, the mOGCs in both types of mice showed significant signs of oxidative stress damage, including decreased SOD and ATP, increased ROS levels. Detailed analyses revealed that the decreased Kl expression led to the reduced expression of autophagy-related proteins in mOGCs, which resulted in decreased autophagy activity. Finally, we found that cyclophosphamide attenuated the autophagy function of mOGCs via upregulating microRNA-15b expression, which silenced the endogenous Kl mRNA expression and stimulated the activity of the downstream TGF beta 1/Smad pathway. Therefore, we demonstrated that Kl was one of the key inhibitory factors in the development of POF. It elucidated the underlying epigenetic regulatory mechanism, whereby cyclophosphamide-dependent microRNA-15b inhibited Kl expression, leading to the reduced ability of mOGCs to induce autophagy and ROS scavenging, ultimately causing POF.
机译:透彻了解过早的卵巢衰竭(POF)的表观遗传学调节机制仍缺乏。在这里,我们发现在小鼠卵巢颗粒细胞(MOGCS)中α-Klotho(KL)表达诱导的环磷酰胺显着降低,表明环磷酰胺抑制KL表达。环磷酰胺也显着加速老化,并导致秀丽隐杆线虫的妊娠率下降。随后指出,K1( - / - )小鼠表现出的病理状况与在环膦酰胺诱导的POF小鼠中观察到的病理状况。此外,两种小鼠中的MOGS显示出氧化应激损伤的显着迹象,包括降低的SOD和ATP,增加了ROS水平。详细分析表明,降低的KL表达导致术中的自噬相关蛋白表达降低,导致自噬活性降低。最后,我们发现环磷酰胺通过上调MicroRNA-15B表达衰减Mogcs的自噬功能,该表达沉默了内源性KL mRNA表达并刺激了下游TGFβ1/ smad途径的活性。因此,我们证明KL是POF发展的关键抑制因素之一。它阐明了潜在的表观遗传调节机制,由此环磷酰胺依赖性微小RORNA-15B抑制KL表达,导致术诱导自噬和ROS清除的降低能力,最终导致POF。

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