Literature DB >> 21159317

Radiation-induced epigenetic alterations after low and high LET irradiations.

Umut Aypar1, William F Morgan, Janet E Baulch.   

Abstract

Epigenetics, including DNA methylation and microRNA (miRNA) expression, could be the missing link in understanding radiation-induced genomic instability (RIGI). This study tests the hypothesis that irradiation induces epigenetic aberrations, which could eventually lead to RIGI, and that the epigenetic aberrations induced by low linear energy transfer (LET) irradiation are different than those induced by high LET irradiations. GM10115 cells were irradiated with low LET X-rays and high LET iron (Fe) ions and evaluated for DNA damage, cell survival and chromosomal instability. The cells were also evaluated for specific locus methylation of nuclear factor-kappa B (NFκB), tumor suppressor in lung cancer 1 (TSLC1) and cadherin 1 (CDH1) gene promoter regions, long interspersed nuclear element 1 (LINE-1) and Alu repeat element methylation, CpG and non-CpG global methylation and miRNA expression levels. Irradiated cells showed increased micronucleus induction and cell killing immediately following exposure, but were chromosomally stable at delayed times post-irradiation. At this same delayed time, alterations in repeat element and global DNA methylation and miRNA expression were observed. Analyses of DNA methylation predominantly showed hypomethylation, however hypermethylation was also observed. We demonstrate that miRNA expression levels can be altered after X-ray irradiation and that these miRNA are involved in chromatin remodeling and DNA methylation. A higher incidence of epigenetic changes was observed after exposure to X-rays than Fe ions even though Fe ions elicited more chromosomal damage and cell killing. This distinction is apparent at miRNA analyses at which only three miRNA involved in two major pathways were altered after high LET irradiations while six miRNA involved in five major pathways were altered after low LET irradiations. This study also shows that the irradiated cells acquire epigenetic changes suggesting that epigenetic aberrations may arise in the cell without initiating chromosomal instability.
Copyright © 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 21159317     DOI: 10.1016/j.mrfmmm.2010.12.003

Source DB:  PubMed          Journal:  Mutat Res        ISSN: 0027-5107            Impact factor:   2.433


  42 in total

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Review 2.  DNA Methylation in Radiation-Induced Carcinogenesis: Experimental Evidence and Clinical Perspectives.

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3.  Changes in one-carbon metabolism and DNA methylation in the hearts of mice exposed to space environment-relevant doses of oxygen ions (16O).

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Journal:  Life Sci Space Res (Amst)       Date:  2019-05-31

4.  First generation stochastic gene episilencing (step1) model and applications to in vitro carcinogen exposure.

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Journal:  Dose Response       Date:  2011-08-26       Impact factor: 2.658

5.  Densely ionizing radiation affects DNA methylation of selective LINE-1 elements.

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Journal:  Environ Res       Date:  2016-07-14       Impact factor: 6.498

6.  Global methylation of blood leukocyte DNA and risk of melanoma.

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7.  LINE-1 in response to exposure to ionizing radiation.

Authors:  Igor Koturbash
Journal:  Mob Genet Elements       Date:  2017-10-19

Review 8.  Effects of ionizing radiation on DNA methylation: from experimental biology to clinical applications.

Authors:  Isabelle R Miousse; Kristy R Kutanzi; Igor Koturbash
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Review 9.  Response of transposable elements to environmental stressors.

Authors:  Isabelle R Miousse; Marie-Cecile G Chalbot; Annie Lumen; Alesia Ferguson; Ilias G Kavouras; Igor Koturbash
Journal:  Mutat Res Rev Mutat Res       Date:  2015-05-30       Impact factor: 5.657

10.  Exposure to low-dose (56)Fe-ion radiation induces long-term epigenetic alterations in mouse bone marrow hematopoietic progenitor and stem cells.

Authors:  Isabelle R Miousse; Lijian Shao; Igor Koturbash; Jianhui Chang; Wei Feng; Yingying Wang; Antiño R Allen; Jennifer Turner; Blair Stewart; Jacob Raber; Daohong Zhou
Journal:  Radiat Res       Date:  2014-06-24       Impact factor: 2.841

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