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Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells

Long-term exposure to airborne PM(2.5) is associated with increased lung cancer risk but the underlying mechanism remains unclear. We characterized global microRNA and mRNA expression in human bronchial epithelial cells exposed to PM(2.5) organic extract and integrally analyzed microRNA-mRNA interac...

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Autores principales: Liu, Chunling, Guo, Huan, Cheng, Xinxin, Shao, Mingming, Wu, Chen, Wang, Suhan, Li, Hongmin, Wei, Lixuan, Gao, Yanning, Tan, Wen, Cheng, Shujun, Wu, Tangchun, Yu, Dianke, Lin, Dongxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4745737/
https://www.ncbi.nlm.nih.gov/pubmed/26338969
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author Liu, Chunling
Guo, Huan
Cheng, Xinxin
Shao, Mingming
Wu, Chen
Wang, Suhan
Li, Hongmin
Wei, Lixuan
Gao, Yanning
Tan, Wen
Cheng, Shujun
Wu, Tangchun
Yu, Dianke
Lin, Dongxin
author_facet Liu, Chunling
Guo, Huan
Cheng, Xinxin
Shao, Mingming
Wu, Chen
Wang, Suhan
Li, Hongmin
Wei, Lixuan
Gao, Yanning
Tan, Wen
Cheng, Shujun
Wu, Tangchun
Yu, Dianke
Lin, Dongxin
author_sort Liu, Chunling
collection PubMed
description Long-term exposure to airborne PM(2.5) is associated with increased lung cancer risk but the underlying mechanism remains unclear. We characterized global microRNA and mRNA expression in human bronchial epithelial cells exposed to PM(2.5) organic extract and integrally analyzed microRNA-mRNA interactions. Foci formation and xenograft tumorigenesis in mice with NIH3T3 cells expressing genes targeted by microRNAs were performed to explore the oncogenic potential of these genes. We also detected plasma levels of candidate microRNAs in subjects exposed to different levels of air PM(2.5) and examined the aberrant expression of genes targeted by these microRNAs in human lung cancer. Under our experimental conditions, treatment of cells with PM(2.5) extract resulted in downregulation of 138 microRNAs and aberrant expression of 13 mRNAs (11 upregulation and 2 downregulation). In silico and biochemical analyses suggested SLC30A1, SERPINB2 and AKR1C1, among the upregulated genes, as target for miR-182 and miR-185, respectively. Ectopic expression of each of these genes significantly enhanced foci formation in NIH3T3 cells. Following subcutaneous injection of these cells into nude mice, fibrosarcoma were formed from SLC30A1- or SERPINB2-expressing cells. Reduced plasma levels of miR-182 were detected in subjects exposed to high level of PM(2.5) than in those exposed to low level of PM(2.5) (P = 0.043). Similar results were seen for miR-185 although the difference was not statistically significant (P = 0.328). Increased expressions of SLC30A1, SERPINB2 and AKR1C1 were detected in human lung cancer. These results suggest that modulation of miR-182 and miR-185 and their target genes may contribute to lung carcinogenesis attributable to PM(2.5) exposure.
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spelling pubmed-47457372016-02-23 Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells Liu, Chunling Guo, Huan Cheng, Xinxin Shao, Mingming Wu, Chen Wang, Suhan Li, Hongmin Wei, Lixuan Gao, Yanning Tan, Wen Cheng, Shujun Wu, Tangchun Yu, Dianke Lin, Dongxin Oncotarget Research Paper Long-term exposure to airborne PM(2.5) is associated with increased lung cancer risk but the underlying mechanism remains unclear. We characterized global microRNA and mRNA expression in human bronchial epithelial cells exposed to PM(2.5) organic extract and integrally analyzed microRNA-mRNA interactions. Foci formation and xenograft tumorigenesis in mice with NIH3T3 cells expressing genes targeted by microRNAs were performed to explore the oncogenic potential of these genes. We also detected plasma levels of candidate microRNAs in subjects exposed to different levels of air PM(2.5) and examined the aberrant expression of genes targeted by these microRNAs in human lung cancer. Under our experimental conditions, treatment of cells with PM(2.5) extract resulted in downregulation of 138 microRNAs and aberrant expression of 13 mRNAs (11 upregulation and 2 downregulation). In silico and biochemical analyses suggested SLC30A1, SERPINB2 and AKR1C1, among the upregulated genes, as target for miR-182 and miR-185, respectively. Ectopic expression of each of these genes significantly enhanced foci formation in NIH3T3 cells. Following subcutaneous injection of these cells into nude mice, fibrosarcoma were formed from SLC30A1- or SERPINB2-expressing cells. Reduced plasma levels of miR-182 were detected in subjects exposed to high level of PM(2.5) than in those exposed to low level of PM(2.5) (P = 0.043). Similar results were seen for miR-185 although the difference was not statistically significant (P = 0.328). Increased expressions of SLC30A1, SERPINB2 and AKR1C1 were detected in human lung cancer. These results suggest that modulation of miR-182 and miR-185 and their target genes may contribute to lung carcinogenesis attributable to PM(2.5) exposure. Impact Journals LLC 2015-08-21 /pmc/articles/PMC4745737/ /pubmed/26338969 Text en Copyright: © 2015 Liu et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Liu, Chunling
Guo, Huan
Cheng, Xinxin
Shao, Mingming
Wu, Chen
Wang, Suhan
Li, Hongmin
Wei, Lixuan
Gao, Yanning
Tan, Wen
Cheng, Shujun
Wu, Tangchun
Yu, Dianke
Lin, Dongxin
Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells
title Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells
title_full Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells
title_fullStr Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells
title_full_unstemmed Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells
title_short Exposure to airborne PM(2.5) suppresses microRNA expression and deregulates target oncogenes that cause neoplastic transformation in NIH3T3 cells
title_sort exposure to airborne pm(2.5) suppresses microrna expression and deregulates target oncogenes that cause neoplastic transformation in nih3t3 cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4745737/
https://www.ncbi.nlm.nih.gov/pubmed/26338969
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