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紫外线A照射的光老化原代人成纤维细胞中的差异微小RNA谱。

Differential miRNA profile on photoaged primary human fibroblasts irradiated with ultraviolet A.

作者信息

Li Wei, Zhou Bing-Rong, Hua Li-Juan, Guo Ze, Luo Dan

机构信息

Department of Dermatology, the First Affiliated Hospital of Nanjing Medical University, Nanjing, Jiangsu, 210029, China.

出版信息

Tumour Biol. 2013 Dec;34(6):3491-500. doi: 10.1007/s13277-013-0927-4. Epub 2013 Jul 7.

Abstract

Photoaging is cell aging caused by long-wave ultraviolet (UVA) radiation which is the main cause of human skin aging produced by exogenous environment. As an endogenous noncoding small RNA, microRNAs (miRNAs) are sensitive to environmental changes, and the expression change of miRNAs is an important manner to adjust to environment. However, the miRNA profile on photoaged human skin irradiated with UVA remains unknown and whether UVA responsive miRNAs participate in the UVA-caused stress reaction of skin cells is also unclear. In this study, we established an in vitro photoaging model with UVA-radiated human primary cultured fibroblasts, which could mimic UVA-induced photoaging of skin. Differentially expressed miRNAs during photoaging, including five up- and seven downregulated miRNAs, were found by microarray analysis and were verified by quantitative real-time PCR. With bioinformatics methods, the predicted miRNA targets were suggested to be associated with pathways in cancers. Among the significantly UVA-downregulated miRNAs, miR-146a overexpression antagonized the UVA-induced proliferation inhibition and suppressed the upregulation of aging-related genes in photoaging of our model. Western blot and luciferase assay showed that Smad4 might be a target of miR-146a to exert miR-146a functions during photoaging. Therefore, UVA radiation-induced photoaging results in specific patterns of miRNA response and miR-146a are able to antagonize UVA-caused photoaging partially through targeting Smad4.

摘要

光老化是由长波紫外线(UVA)辐射引起的细胞老化,UVA辐射是外源性环境导致人类皮肤老化的主要原因。作为一种内源性非编码小RNA,微小RNA(miRNA)对环境变化敏感,miRNA的表达变化是适应环境的重要方式。然而,UVA照射的光老化人类皮肤中的miRNA谱仍然未知,UVA反应性miRNA是否参与皮肤细胞的UVA诱导应激反应也不清楚。在本研究中,我们建立了一个UVA辐射人类原代培养成纤维细胞的体外光老化模型,该模型可以模拟UVA诱导的皮肤光老化。通过微阵列分析发现了光老化过程中差异表达的miRNA,包括5个上调和7个下调的miRNA,并通过定量实时PCR进行了验证。利用生物信息学方法,预测的miRNA靶标被认为与癌症相关通路有关。在显著下调的UVA miRNA中,miR-146a过表达拮抗了UVA诱导的增殖抑制,并抑制了我们模型光老化中衰老相关基因的上调。蛋白质免疫印迹和荧光素酶测定表明,Smad4可能是miR-146a在光老化过程中发挥功能的靶标。因此,UVA辐射诱导的光老化导致特定模式的miRNA反应,miR-146a能够通过靶向Smad4部分拮抗UVA引起的光老化。

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