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Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks
BACKGROUND: Micronuclei (MN) in mammalian cells serve as a reliable biomarker of genomic instability and genotoxic exposure. Elevation of MN is commonly observed in cells bearing intrinsic genomic instability and in normal cells exposed to genotoxic agents. DNA double-strand breaks are marked by pho...
Autores principales: | , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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Public Library of Science
2011
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3078113/ https://www.ncbi.nlm.nih.gov/pubmed/21525980 http://dx.doi.org/10.1371/journal.pone.0018618 |
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author | Xu, Bing Sun, Zhaoliang Liu, Zhaojian Guo, Haiyang Liu, Qiao Jiang, Haiyan Zou, Yongxin Gong, Yaoqin Tischfield, Jay A. Shao, Changshun |
author_facet | Xu, Bing Sun, Zhaoliang Liu, Zhaojian Guo, Haiyang Liu, Qiao Jiang, Haiyan Zou, Yongxin Gong, Yaoqin Tischfield, Jay A. Shao, Changshun |
author_sort | Xu, Bing |
collection | PubMed |
description | BACKGROUND: Micronuclei (MN) in mammalian cells serve as a reliable biomarker of genomic instability and genotoxic exposure. Elevation of MN is commonly observed in cells bearing intrinsic genomic instability and in normal cells exposed to genotoxic agents. DNA double-strand breaks are marked by phosphorylation of H2AX at serine 139 (γ-H2AX). One subclass of MN contains massive and uniform γ-H2AX signals. This study tested whether this subclass of MN can be induced by replication stress. PRINCIPAL FINDINGS: We observed that a large proportion of MN, from 20% to nearly 50%, showed uniform staining by antibodies against γ-H2AX, a marker of DNA double-strand breaks (DSBs). Such micronuclei were designated as MN-γ–H2AX (+). We showed that such MN can be induced by chemicals that are known to cause DNA replication stress and S phase arrest. Hydroxyurea, aphidicolin and thymidine could all significantly induce MN-γ–H2AX (+), which were formed during S phase and appeared to be derived from aggregation of DSBs. MN-γ–H2AX (−), MN that were devoid of uniform γ-H2AX signals, were induced to a lesser extent in terms of fold change. Paclitaxel, which inhibits the disassembly of microtubules, only induced MN-γ–H2AX (−). The frequency of MN-γ–H2AX (+), but not that of MN-γ–H2AX (−), was also significantly increased in cells that experience S phase prolongation due to depletion of cell cycle regulator CUL4B. Depletion of replication protein A1 (RPA1) by RNA interference resulted in an elevation of both MN-γ–H2AX (+) and MN-γ–H2AX (−). CONCLUSIONS/SIGNIFICANCE: A subclass of MN, MN-γ–H2AX (+), can be preferentially induced by replication stress. Classification of MN according to their γ-H2AX status may provide a more refined evaluation of intrinsic genomic instabilities and the various environmental genotoxicants. |
format | Text |
id | pubmed-3078113 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-30781132011-04-27 Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks Xu, Bing Sun, Zhaoliang Liu, Zhaojian Guo, Haiyang Liu, Qiao Jiang, Haiyan Zou, Yongxin Gong, Yaoqin Tischfield, Jay A. Shao, Changshun PLoS One Research Article BACKGROUND: Micronuclei (MN) in mammalian cells serve as a reliable biomarker of genomic instability and genotoxic exposure. Elevation of MN is commonly observed in cells bearing intrinsic genomic instability and in normal cells exposed to genotoxic agents. DNA double-strand breaks are marked by phosphorylation of H2AX at serine 139 (γ-H2AX). One subclass of MN contains massive and uniform γ-H2AX signals. This study tested whether this subclass of MN can be induced by replication stress. PRINCIPAL FINDINGS: We observed that a large proportion of MN, from 20% to nearly 50%, showed uniform staining by antibodies against γ-H2AX, a marker of DNA double-strand breaks (DSBs). Such micronuclei were designated as MN-γ–H2AX (+). We showed that such MN can be induced by chemicals that are known to cause DNA replication stress and S phase arrest. Hydroxyurea, aphidicolin and thymidine could all significantly induce MN-γ–H2AX (+), which were formed during S phase and appeared to be derived from aggregation of DSBs. MN-γ–H2AX (−), MN that were devoid of uniform γ-H2AX signals, were induced to a lesser extent in terms of fold change. Paclitaxel, which inhibits the disassembly of microtubules, only induced MN-γ–H2AX (−). The frequency of MN-γ–H2AX (+), but not that of MN-γ–H2AX (−), was also significantly increased in cells that experience S phase prolongation due to depletion of cell cycle regulator CUL4B. Depletion of replication protein A1 (RPA1) by RNA interference resulted in an elevation of both MN-γ–H2AX (+) and MN-γ–H2AX (−). CONCLUSIONS/SIGNIFICANCE: A subclass of MN, MN-γ–H2AX (+), can be preferentially induced by replication stress. Classification of MN according to their γ-H2AX status may provide a more refined evaluation of intrinsic genomic instabilities and the various environmental genotoxicants. Public Library of Science 2011-04-15 /pmc/articles/PMC3078113/ /pubmed/21525980 http://dx.doi.org/10.1371/journal.pone.0018618 Text en Xu et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited. |
spellingShingle | Research Article Xu, Bing Sun, Zhaoliang Liu, Zhaojian Guo, Haiyang Liu, Qiao Jiang, Haiyan Zou, Yongxin Gong, Yaoqin Tischfield, Jay A. Shao, Changshun Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks |
title | Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks |
title_full | Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks |
title_fullStr | Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks |
title_full_unstemmed | Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks |
title_short | Replication Stress Induces Micronuclei Comprising of Aggregated DNA Double-Strand Breaks |
title_sort | replication stress induces micronuclei comprising of aggregated dna double-strand breaks |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3078113/ https://www.ncbi.nlm.nih.gov/pubmed/21525980 http://dx.doi.org/10.1371/journal.pone.0018618 |
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