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急性颗粒物暴露后 miRNA 和炎症基因表达的综合分析。

Integrative Analysis of miRNA and inflammatory gene expression after acute particulate matter exposure.

机构信息

Exposure, Epidemiology and Risk Program, Department of Environmental Health, Laboratory of Environmental Epigenetics, Harvard School of Public Health, Boston, Massachusetts 02115, USA.

出版信息

Toxicol Sci. 2013 Apr;132(2):307-16. doi: 10.1093/toxsci/kft013. Epub 2013 Jan 28.

Abstract

MicroRNAs (miRNAs) are environmentally sensitive inhibitors of gene expression that may mediate the effects of metal-rich particulate matter (PM) and toxic metals on human individuals. Previous environmental miRNA studies have investigated a limited number of candidate miRNAs and have not yet evaluated the functional effects on gene expression. In this study, we wanted to identify PM-sensitive miRNAs using microarray profiling on matched baseline and postexposure RNA from foundry workers with well-characterized exposure to metal-rich PM and to characterize miRNA relations with expression of candidate inflammatory genes. We applied microarray analysis of 847 human miRNAs and real-time PCR analysis of 18 candidate inflammatory genes on matched blood samples collected from foundry workers at baseline and after 3 days of work (postexposure). We identified differentially expressed miRNAs (fold change [FC] > 2 and p < 0.05) and correlated their expression with the inflammatory associated genes. We performed in silico network analysis in MetaCore v6.9 to characterize the biological pathways connecting miRNA-mRNA pairs. Microarray analysis identified four miRNAs that were differentially expressed in postexposure compared with baseline samples, including miR-421 (FC = 2.81, p < 0.001), miR-146a (FC = 2.62, p = 0.007), miR-29a (FC = 2.91, p < 0.001), and let-7g (FC = 2.73, p = 0.019). Using false discovery date adjustment for multiple comparisons, we found 11 miRNA-mRNA correlated pairs involving the 4 differentially expressed miRNAs and candidate inflammatory genes. In silico network analysis with MetaCore database identified biological interactions for all the 11 miRNA-mRNA pairs, which ranged from direct mRNA targeting to complex interactions with multiple intermediates. Acute PM exposure may affect gene regulation through PM-responsive miRNAs that directly or indirectly control inflammatory gene expression.

摘要

微小 RNA(miRNA)是环境敏感的基因表达抑制剂,可能介导富含金属的颗粒物(PM)和有毒金属对个体的影响。以前的环境 miRNA 研究仅调查了有限数量的候选 miRNA,尚未评估其对基因表达的功能影响。在这项研究中,我们希望通过对暴露于富含金属的 PM 的铸造工人进行匹配的基线和暴露后 RNA 的微阵列分析,来鉴定对 PM 敏感的 miRNA,并描述 miRNA 与候选炎症基因表达之间的关系。我们应用微阵列分析了 847 个人类 miRNA,并用实时 PCR 分析了暴露于金属富尘的铸造工人在基线和暴露后 3 天(暴露后)采集的匹配血液样本中的 18 个候选炎症基因。我们鉴定了差异表达的 miRNA(倍数变化 [FC] > 2,p < 0.05),并将其表达与炎症相关基因相关联。我们在 MetaCore v6.9 中进行了计算机模拟网络分析,以描述连接 miRNA-mRNA 对的生物学途径。微阵列分析鉴定了与基线样本相比,在暴露后样本中差异表达的 4 个 miRNA,包括 miR-421(FC = 2.81,p < 0.001)、miR-146a(FC = 2.62,p = 0.007)、miR-29a(FC = 2.91,p < 0.001)和 let-7g(FC = 2.73,p = 0.019)。使用虚假发现日期调整进行多次比较,我们发现了涉及 4 个差异表达 miRNA 和候选炎症基因的 11 个 miRNA-mRNA 相关对。使用 MetaCore 数据库进行计算机模拟网络分析,鉴定了所有 11 个 miRNA-mRNA 对的生物学相互作用,这些相互作用从直接靶向 mRNA 到具有多个中间物的复杂相互作用。急性 PM 暴露可能通过直接或间接控制炎症基因表达的 PM 反应性 miRNA 影响基因调节。

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