Literature DB >> 32006662

Mechanism of miR-222 and miR-126 regulation and its role in asbestos-induced malignancy.

Simona Gaetani1, Federica Monaco1, Federica Alessandrini2, Adriano Tagliabracci2, Armando Sabbatini3, Massimo Bracci1, Matteo Valentino1, Jiri Neuzil4, Monica Amati1, Lory Santarelli5, Marco Tomasetti6.   

Abstract

MiR-222 and miR-126 are associated with asbestos exposure and the ensuing malignancy, but the mechanism(s) of their regulation remain unclear. We evaluated the mechanism by which asbestos regulates miR-222 and miR-126 expression in the context of cancer etiology. An 'in vitro' model of carcinogen-induced cell transformation was used based on exposing bronchial epithelium BEAS-2B cells to three different carcinogens including asbestos. Involvement of the EGFR pathway and the role of epigenetics have been investigated in carcinogen-transformed cells and in malignant mesothelioma, a neoplastic disease associated with asbestos exposure. Increased expression of miR-222 and miR-126 were found in asbestos-transformed cells, but not in cells exposed to arsenic and chrome. Asbestos-mediated activation of the EGFR pathway and macrophages-induced inflammation resulted in miR-222 upregulation, which was reversed by EGFR inhibition. Conversely, asbestos-induced miR-126 expression was affected neither by EGFR modulation nor inflammation. Rather than methylation of the miR-126 host gene EGFL7, epigenetic mechanism involving DNMT1- and PARP1-mediated chromatin remodeling was found to upregulate of miR-126 in asbestos-exposed cells, while miR-126 was downregulated in malignant cells. Analysis of MM tissue supported the role of PARP1 in miR-126 regulation. Therefore, activation of the EGFR pathway and the PARP1-mediated epigenetic regulation both play a role in asbestos-induced miRNA expression, associated with in asbestos-induced carcinogenesis and tumor progression.
Copyright © 2020 Elsevier Ltd. All rights reserved.

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Keywords:  Asbestos exposure; EGFR pathway; Epigenetic alterations; miR-126; miR-222

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Year:  2020        PMID: 32006662     DOI: 10.1016/j.biocel.2020.105700

Source DB:  PubMed          Journal:  Int J Biochem Cell Biol        ISSN: 1357-2725            Impact factor:   5.085


  1 in total

1.  Integrated miRNA and mRNA Expression Profiles Reveal Differentially Expressed miR-222a as an Antiviral Factor Against Duck Hepatitis A Virus Type 1 Infection.

Authors:  Nana Sui; Ruihua Zhang; Yue Jiang; Honglei Yu; Guige Xu; Jingyu Wang; Yanli Zhu; Zhijing Xie; Jiaqing Hu; Shijin Jiang
Journal:  Front Cell Infect Microbiol       Date:  2022-01-03       Impact factor: 5.293

  1 in total

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