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首页> 外文期刊>Cell death & disease. >miR-377 induces senescence in human skin fibroblasts by targeting DNA methyltransferase 1
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miR-377 induces senescence in human skin fibroblasts by targeting DNA methyltransferase 1

机译:MiR-377通过靶向DNA甲基转移酶1诱导人体皮肤成纤维细胞中的衰老

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摘要

Skin aging is a complicated physiological process and epigenetic feature, including microRNA-mediated regulation and DNA methylation, have been shown to contribute to this process. DNA methylation is regulated by DNA methyltransferase, of which DNA methyltransferase 1 (DNMT1) is the most abundantly known. But evidence supporting its role in skin aging remains scarce, and no report regards its specifical upstream-regulating molecules in the process of skin aging so far. Here, we found that DNMT1 expression was markedly higher in young human skin fibroblasts (HSFs) than that in passage-aged HSFs, and DNMT1 knockdown significantly induced the senescence phenotype in young HSFs. We predicted the upstream miRNAs which could regulate DNMT1 with miRNA databases and found miR-377 had high homology with a sequence in the 3′-UTR of human DNMT1 mRNA. We confirmed that miR-377 was a potential regulator of DNMT1 by luciferase reporter assays. miR-377 expression in passage-aged HSFs was markedly higher than that in the young HSFs. miR-377 overexpression promoted senescence in young HSFs, and inhibition of miR-377 reduced senescence in passage-aged HSFs. Moreover, these functions were mediated by targeting DNMT1. Microfluidic PCR and next-generation bisulfite sequencing of 24 senescent-associated genes’ promoters revealed alterations of the promoter methylation levels of FoxD3, p53, and UTF1 in HSFs treated with miR-377 mimics or inhibitors. We also verified that the miR-377 -mediated changes in p53 expression could be reversed by regulation of DNMT1 in HSFs. Similarly, there was a negative correlation between miR-377 and DNMT1 expression in young and photoaged HSFs, HSFs, or skin tissues from UV-unexposed areas of different aged donors. Our results highlight a novel role for miR-377 -DNMT1-p53 axis in HSF senescence. These findings shed new light on the mechanisms of skin aging and identify future opportunities for its therapeutic prevention.
机译:皮肤衰老是一种复杂的生理过程,表述特征,包括MicroRNA介导的调节和DNA甲基化,已显示有助于该方法。 DNA甲基化由DNA甲基转移酶调节,其中DNA甲基转移酶1(DNMT1)是最丰富的。但证据证据支持其在皮肤上老龄化的作用仍然是稀缺的,并且目前没有报告皮肤老化过程中的细节上游调节分子。在这里,我们发现幼年人皮肤成纤维细胞(HSF)中的DNMT1表达明显较高,并且DNMT1敲低显着诱导年轻HSF中的衰老表型。我们预测了可以调节与miRNA数据库的DNMT1的上游miRNA,发现miR-377具有高同源性与人DNMT1 mRNA的3'-UTR中的序列。我们确认MiR-377是荧光素酶报告分析的DNMT1的潜在调节因子。 miR-377通过段的HSF中的表达明显高于年轻氟氯烯. miR-377过表达促进了年轻的HSF中的衰老,并抑制miR-377在通过 - 老化的HSF中降低了衰老。此外,这些功能通过靶向DNMT1来介导。微流体PCR和下一代亚硫酸氢盐测序24升衰老相关基因的启动子揭示了用miR-377模拟物或抑制剂处理的HSFS中FoxD3,P53和UTF1的启动子甲基化水平的改变。我们还验证了MIR-377介绍的P53表达的改变可以通过调节HSF中的DNMT1来逆转。类似地,来自不同老年捐助者的紫外线未曝光区域的年轻和使用的HSF,HSF或皮肤组织中的miR-377和DNMT1表达之间存在负相关性。我们的结果突出了MIR-377 -DNMT1-P53轴在HSF衰老中的新颖作用。这些调查结果阐述了皮肤老化机制,并确定了未来的治疗预防机会。

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