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整合的mRNA和微小RNA分析揭示了Jurkat T细胞对银纳米颗粒和银离子不同敏感性的表观遗传机制。

Integrated mRNA and micro RNA profiling reveals epigenetic mechanism of differential sensitivity of Jurkat T cells to AgNPs and Ag ions.

作者信息

Eom Hyun-Jeong, Chatterjee Nivedita, Lee Jeongsoo, Choi Jinhee

机构信息

School of Environmental Engineering, Graduate School of Energy and Environmental system Engineering, University of Seoul, 163 Siripdaero, Dongdaemun-gu, Seoul 130-743, South Korea.

National Instrumentation Center for Environmental Management, College of Agriculture and Life Sciences, Seoul National University, Seoul 151-921, South Korea.

出版信息

Toxicol Lett. 2014 Aug 17;229(1):311-8. doi: 10.1016/j.toxlet.2014.05.019. Epub 2014 Jun 27.

Abstract

In our previous in vitro study of the toxicity on silver nanoparticles (AgNPs), we observed a dramatically higher sensitivity of Jurkat T cells to AgNPs than to Ag ions, and DNA damage and apoptosis were found to be involved in that toxicity. In this study, to understand underlying mechanism of different sensitivity of Jurket T cells to AgNPs and Ag ions, mRNA microarray and micro RNA microarray were concomitantly conducted on AgNPs and Ag ions exposed Jurkat T cells. Surprisingly only a small number of genes were differentially expressed by exposure to each of the silver (15 altered mRNA by AgNPs exposure, whereas 4 altered mRNA by Ag ions exposure, as determined 1.5-fold change as the cut-off value). miRNA microarray revealed that the expression of 63 miRNAs was altered by AgNPs exposure, whereas that of 32 miRNAs was altered by Ag ions exposure. An integrated analysis of mRNA and miRNA expression revealed that the expression of hsa-miR-219-5p, was negatively correlated with the expression of metallothionein 1F (MT1F) and tribbles homolog 3 (TRIB3), in cells exposed to AgNPs; whereas, the expression of hsa-miR-654-3p was negatively correlated with the expression of mRNA, endonuclease G-like 1 (EDGL1) in cells exposed to Ag ions. Network analysis were further conducted on mRNA-miRNA pairs, which revealed that miR-219-5p-MT1F and -TRIB3 pairs by AgNPs are being involved in various cellular processes, such as, oxidative stress, cell cycle and apoptosis, whereas, miR-654-3p and ENDOGL1 pair by Ag ions generated a much simpler network. The putative target genes of AgNPs-induced miR-504, miR-33 and miR-302 identified by Tarbase 6.0 are also found to be involved in DNA damage and apoptosis. These results collectively suggest that distinct epigenetic regulation may be an underlying mechanism of different sensitivity of Jurkat T cells to AgNPs and Ag ion. Further identification of putative target genes of DE miRNA by AgNPs and Ag ions may provide additional clues for the mechanism of differential toxicity. Overall results suggest that epigenetic mechanism is involved in toxicity of AgNPs and Ag ions in Jurkat T cells.

摘要

在我们之前关于银纳米颗粒(AgNPs)毒性的体外研究中,我们观察到Jurkat T细胞对AgNPs的敏感性显著高于对Ag离子的敏感性,并且发现DNA损伤和细胞凋亡与该毒性有关。在本研究中,为了了解Jurket T细胞对AgNPs和Ag离子不同敏感性的潜在机制,对暴露于AgNPs和Ag离子的Jurkat T细胞同时进行了mRNA微阵列和微小RNA微阵列分析。令人惊讶的是,仅少量基因在暴露于每种银时差异表达(以1.5倍变化作为截止值确定,AgNPs暴露使15个mRNA改变,而Ag离子暴露使4个mRNA改变)。miRNA微阵列显示,AgNPs暴露改变了63种miRNA的表达,而Ag离子暴露改变了32种miRNA的表达。对mRNA和miRNA表达的综合分析表明,在暴露于AgNPs的细胞中,hsa-miR-219-5p的表达与金属硫蛋白1F(MT1F)和TRIB3同源物3(TRIB3)的表达呈负相关;而在暴露于Ag离子的细胞中,hsa-miR-654-3p的表达与核酸内切酶G样1(EDGL1)mRNA的表达呈负相关。对mRNA-miRNA对进一步进行网络分析,结果显示AgNPs诱导的miR-219-5p-MT1F和-TRIB3对参与各种细胞过程,如氧化应激、细胞周期和细胞凋亡,而Ag离子诱导的miR-654-3p和ENDOGL1对形成的网络则简单得多。通过Tarbase 6.0鉴定的AgNPs诱导的miR-504, miR-33和miR-302的推定靶基因也被发现与DNA损伤和细胞凋亡有关。这些结果共同表明,不同的表观遗传调控可能是Jurkat T细胞对AgNPs和Ag离子不同敏感性的潜在机制。进一步鉴定AgNPs和Ag离子诱导的差异表达miRNA的推定靶基因可能为差异毒性机制提供更多线索。总体结果表明,表观遗传机制参与了Jurkat T细胞中AgNPs和Ag离子的毒性作用。

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