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A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL)

Genomic instability is a hallmark of cancer and an enabling factor for genetic alterations that drive cancer development and progression. The clashing of mitosis and aberrantly expressed meiosis machineries, which may contribute to genomic instability, has been coined cancer “meiomitosis”. LINE-1 re...

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Autores principales: Tsang, Matthew, Gantchev, Jennifer, Netchiporouk, Elena, Moreau, Linda, Ghazawi, Feras M., Glassman, Steven, Sasseville, Denis, Litvinov, Ivan V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6340880/
https://www.ncbi.nlm.nih.gov/pubmed/30701021
http://dx.doi.org/10.18632/oncotarget.26479
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author Tsang, Matthew
Gantchev, Jennifer
Netchiporouk, Elena
Moreau, Linda
Ghazawi, Feras M.
Glassman, Steven
Sasseville, Denis
Litvinov, Ivan V.
author_facet Tsang, Matthew
Gantchev, Jennifer
Netchiporouk, Elena
Moreau, Linda
Ghazawi, Feras M.
Glassman, Steven
Sasseville, Denis
Litvinov, Ivan V.
author_sort Tsang, Matthew
collection PubMed
description Genomic instability is a hallmark of cancer and an enabling factor for genetic alterations that drive cancer development and progression. The clashing of mitosis and aberrantly expressed meiosis machineries, which may contribute to genomic instability, has been coined cancer “meiomitosis”. LINE-1 retrotransposition, a process active in germ cells, acts outside of the meiotic machinery to create DNA double strand breaks (DNA DSBs) and has played an important role in the evolution of the human genome. We have previously demonstrated that in CTCL several cancer testis/meiotic genes are expressed. Furthermore, this cancer exhibits extensive and ongoing chromosomal/microsatellite instability. In this study we analyzed immortalized patient-derived cells and primary CTCL patient samples using RT-PCR, western blotting and confocal microscopy and found that proteins critically involved in meiosis and LINE-1 retrotransposition are expressed and are associated with chromosomal instability and DNA DSB formation. Using cell cycle synchronization, we show G1/S phase-transition-specific expression of meiosis proteins. Using the Alu retrotransposition assay, we demonstrate the functional activity of LINE-1 retrotransposon in CTCL. Histone acetyltransferase inhibition results in downregulation of the ectopic germ cell programs and concomitant decrease in DNA DSBs foci formation. Notably, LINE-1 and meiosis genes were expressed across a panel of other solid tumor cell lines. Taken together, our results indicate that malignant cells in culture undergo “cancer meiomitosis” rather than the classic mitosis division. The ectopic expression of meiosis genes and reactivation of LINE-1 may be contributing to genomic instability and represent novel targets for immunotherapy in this and other cancers.
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spelling pubmed-63408802019-01-30 A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL) Tsang, Matthew Gantchev, Jennifer Netchiporouk, Elena Moreau, Linda Ghazawi, Feras M. Glassman, Steven Sasseville, Denis Litvinov, Ivan V. Oncotarget Research Paper Genomic instability is a hallmark of cancer and an enabling factor for genetic alterations that drive cancer development and progression. The clashing of mitosis and aberrantly expressed meiosis machineries, which may contribute to genomic instability, has been coined cancer “meiomitosis”. LINE-1 retrotransposition, a process active in germ cells, acts outside of the meiotic machinery to create DNA double strand breaks (DNA DSBs) and has played an important role in the evolution of the human genome. We have previously demonstrated that in CTCL several cancer testis/meiotic genes are expressed. Furthermore, this cancer exhibits extensive and ongoing chromosomal/microsatellite instability. In this study we analyzed immortalized patient-derived cells and primary CTCL patient samples using RT-PCR, western blotting and confocal microscopy and found that proteins critically involved in meiosis and LINE-1 retrotransposition are expressed and are associated with chromosomal instability and DNA DSB formation. Using cell cycle synchronization, we show G1/S phase-transition-specific expression of meiosis proteins. Using the Alu retrotransposition assay, we demonstrate the functional activity of LINE-1 retrotransposon in CTCL. Histone acetyltransferase inhibition results in downregulation of the ectopic germ cell programs and concomitant decrease in DNA DSBs foci formation. Notably, LINE-1 and meiosis genes were expressed across a panel of other solid tumor cell lines. Taken together, our results indicate that malignant cells in culture undergo “cancer meiomitosis” rather than the classic mitosis division. The ectopic expression of meiosis genes and reactivation of LINE-1 may be contributing to genomic instability and represent novel targets for immunotherapy in this and other cancers. Impact Journals LLC 2018-12-28 /pmc/articles/PMC6340880/ /pubmed/30701021 http://dx.doi.org/10.18632/oncotarget.26479 Text en Copyright: © 2018 Tsang et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Tsang, Matthew
Gantchev, Jennifer
Netchiporouk, Elena
Moreau, Linda
Ghazawi, Feras M.
Glassman, Steven
Sasseville, Denis
Litvinov, Ivan V.
A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL)
title A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL)
title_full A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL)
title_fullStr A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL)
title_full_unstemmed A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL)
title_short A study of meiomitosis and novel pathways of genomic instability in cutaneous T-cell lymphomas (CTCL)
title_sort study of meiomitosis and novel pathways of genomic instability in cutaneous t-cell lymphomas (ctcl)
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6340880/
https://www.ncbi.nlm.nih.gov/pubmed/30701021
http://dx.doi.org/10.18632/oncotarget.26479
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