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Identification of Gene Transcription Start Sites and Enhancers Responding to Pulmonary Carbon Nanotube Exposure in Vivo

机译:鉴定基因转录开始位点和增强剂对体内肺碳纳米管暴露的响应

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Increased use of nanomaterials in industry, medicine, and consumer products has raised concerns over their toxicity. To ensure safe use of nanomaterials, understanding their biological effects at the molecular level is crucial. In particular, the regulatory mechanisms responsible for the cascade of genes activated by nanomaterial exposure are not well-characterized. To this end, we profiled the genome-wide usage of gene transcription start sites and linked active enhancer regions in lungs of C57BL/6 mice 24 h after intratracheal instillation of a single dose of the multiwalled carbon nanotube (MWCNT) Mitsui-7. Our results revealed a massive gene regulatory response, where expression of key inflammatory genes (e.g., Csf3, Il24, and Fgf23) was increased >100-fold 24 h after Mitsui-7 exposure. Many of the Mitsui-7-responsive transcription start sites were alternative transcription start sites for known genes, and the number of alternative transcription start sites used in a given gene was correlated with overall Mitsui-7 response. Strikingly, genes that were up-regulated after Mitsui-7 exposure only through their main annotated transcription start site were linked to inflammatory and defense responses, while genes up-regulated only through alternative transcription start sites were functionally heterogeneous and not inflammation-associated. Furthermore, we identified almost 12 000 active enhancers, many of which were Mitsui-7-responsive, and we identified similarly responding putative target genes. Overall, our study provides the location and activity of Mitsui-7-induced enhancers and transcription start sites, providing a useful resource for targeted experiments elucidating the biological effects of nanomaterials and the identification of biomarkers for early detection of MWCNT-induced inflammation.
机译:在工业,医学和消费产品中增加纳米材料的使用提出了对毒性的担忧。为了确保安全使用纳米材料,了解它们在分子水平的生物学效应至关重要。特别地,负责由纳米材料暴露激活的基因级联的调节机制不是很好的表征。为此,我们探讨了基因转录起始位点的基因组使用,并在腹腔内滴注的C57BL / 6小鼠24小时内连接了肺部的肺部肺部滴注的多壁碳纳米管(MWCNT)Mitsui-7。我们的结果揭示了大规模的基因调节响应,其中在Mitsui-7暴露后,关键炎症基因(例如,CSF3,IL24和FGF23)的表达增加> 100倍24小时。许多MITSUI-7响应转录开始部位是已知基因的替代转录开始点,并且在给定基因中使用的替代转录起始位点的数量与总体间隙-7反应相关。令人醒目的是,仅通过其主要注释的转录开始部位在MITSUI-7暴露后进行上调的基因与炎症和防御反应相关,而仅通过替代转录起始位点上调的基因是功能性的异质和不相关的。此外,我们鉴定了近12 000个活性增强剂,其中许多是Mitsui-7响应性,并且我们鉴定了类似响应的诱发靶基因。总体而言,我们的研究提供了MITSUI-7诱导的增强剂和转录起始位点的位置和活动,为有靶实验提供了有用的资源,阐明了纳米材料的生物学作用以及用于早期检测MWCNT诱导的炎症的生物标志物。

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