BACKGROUND: RDX is a well-known pollutant to induce neurotoxicity. MicroRNAs (miRNA) and messenger RNA (mRNA) profiles are useful tools for toxicogenomics studies. It is worthy to integrate MiRNA and mRNA expression data to understand RDX-induced neurotoxicity. RESULTS: Rats were treated with or without RDX for 48 h. Both miRNA and mRNA profiles were conducted using brain tissues. Nine miRNAs were significantly regulated by RDX. Of these, 6 and 3 miRNAs were up- and down-regulated respectively. The putative target genes of RDX-regulated miRNAs were highly nervous system function genes and pathways enriched. Fifteen differentially genes altered by RDX from mRNA profiles were the putative targets of regulated miRNAs. The induction of miR-71, miR-27ab, miR-98, and miR-135a expression by RDX, could reduce the expression of the genes POLE4, C5ORF13, SULF1 and ROCK2, and eventually induce neurotoxicity. Over-expression of miR-27ab, or reduction of the expression of unknown miRNAs by RDX, could up-regulate HMGCR expression and contribute to neurotoxicity. RDX regulated immune and inflammation response miRNAs and genes could contribute to RDX- induced neurotoxicity and other toxicities as well as animal defending reaction response to RDX exposure. CONCLUSIONS: Our results demonstrate that integrating miRNA and mRNA profiles is valuable to indentify novel biomarkers and molecular mechanisms for RDX-induced neurological disorder and neurotoxicity.
MicroRNA and messenger RNA profiling reveals new biomarkers and mechanisms for RDX induced neurotoxicity.
微RNA和信使RNA谱分析揭示了RDX诱导神经毒性的新生物标志物和机制
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作者:Deng Youping, Ai Junmei, Guan Xin, Wang Zhaohui, Yan Bin, Zhang Daqin, Liu Chang, Wilbanks Mitch S, Escalon Barbara Lynn, Meyers Sharon A, Yang Mary Qu, Perkins Edward J
| 期刊: | BMC Genomics | 影响因子: | 3.700 |
| 时间: | 2014 | 起止号: | 2014;15 Suppl 11(Suppl 11):S1 |
| doi: | 10.1186/1471-2164-15-S11-S1 | 研究方向: | 神经科学 |
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