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L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus

Besides the consequences of retrotransposition, long interspersed element 1 (L1) retrotransposons can affect the host genome through their antisense promoter. In addition to the sense promoter, the evolutionarily recent L1 retrotransposons, which are present in several thousand copies, also possess...

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Autores principales: Pinson, Marie-Elisa, Court, Franck, Masson, Aymeric, Renaud, Yoan, Fantini, Allison, Bacoeur-Ouzillou, Ophélie, Barriere, Marie, Pereira, Bruno, Guichet, Pierre-Olivier, Chautard, Emmanuel, Karayan-Tapon, Lucie, Verrelle, Pierre, Arnaud, Philippe, Vaurs-Barrière, Catherine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9396940/
https://www.ncbi.nlm.nih.gov/pubmed/35298627
http://dx.doi.org/10.1093/hmg/ddac056
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author Pinson, Marie-Elisa
Court, Franck
Masson, Aymeric
Renaud, Yoan
Fantini, Allison
Bacoeur-Ouzillou, Ophélie
Barriere, Marie
Pereira, Bruno
Guichet, Pierre-Olivier
Chautard, Emmanuel
Karayan-Tapon, Lucie
Verrelle, Pierre
Arnaud, Philippe
Vaurs-Barrière, Catherine
author_facet Pinson, Marie-Elisa
Court, Franck
Masson, Aymeric
Renaud, Yoan
Fantini, Allison
Bacoeur-Ouzillou, Ophélie
Barriere, Marie
Pereira, Bruno
Guichet, Pierre-Olivier
Chautard, Emmanuel
Karayan-Tapon, Lucie
Verrelle, Pierre
Arnaud, Philippe
Vaurs-Barrière, Catherine
author_sort Pinson, Marie-Elisa
collection PubMed
description Besides the consequences of retrotransposition, long interspersed element 1 (L1) retrotransposons can affect the host genome through their antisense promoter. In addition to the sense promoter, the evolutionarily recent L1 retrotransposons, which are present in several thousand copies, also possess an anti-sense promoter that can produce L1 chimeric transcripts (LCT) composed of the L1 5′ UTR followed by the adjacent genomic sequence. The full extent to which LCT expression occurs in a given tissue and whether disruption of the defense mechanisms that normally control L1 retrotransposons affects their expression and function in cancer cells, remain to be established. By using CLIFinder, a dedicated bioinformatics tool, we found that LCT expression was widespread in normal brain and aggressive glioma samples, and that approximately 17% of recent L1 retrotransposons, from the L1PA1 to L1PA7 subfamilies, were involved in their production. Importantly, the transcriptional activities of the L1 antisense promoters and of their host loci were coupled. Accordingly, we detected LCT-producing L1 retrotransposons mainly in transcriptionally active genes and genomic loci. Moreover, changes in the host genomic locus expression level in glioma were associated with a similar change in LCT expression level, regardless of the L1 promoter methylation status. Our findings support a model in which the host genomic locus transcriptional activity is the main driving force of LCT expression. We hypothesize that this model is more applicable when host gene and LCT are transcribed from the same strand.
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spelling pubmed-93969402022-08-23 L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus Pinson, Marie-Elisa Court, Franck Masson, Aymeric Renaud, Yoan Fantini, Allison Bacoeur-Ouzillou, Ophélie Barriere, Marie Pereira, Bruno Guichet, Pierre-Olivier Chautard, Emmanuel Karayan-Tapon, Lucie Verrelle, Pierre Arnaud, Philippe Vaurs-Barrière, Catherine Hum Mol Genet Original Article Besides the consequences of retrotransposition, long interspersed element 1 (L1) retrotransposons can affect the host genome through their antisense promoter. In addition to the sense promoter, the evolutionarily recent L1 retrotransposons, which are present in several thousand copies, also possess an anti-sense promoter that can produce L1 chimeric transcripts (LCT) composed of the L1 5′ UTR followed by the adjacent genomic sequence. The full extent to which LCT expression occurs in a given tissue and whether disruption of the defense mechanisms that normally control L1 retrotransposons affects their expression and function in cancer cells, remain to be established. By using CLIFinder, a dedicated bioinformatics tool, we found that LCT expression was widespread in normal brain and aggressive glioma samples, and that approximately 17% of recent L1 retrotransposons, from the L1PA1 to L1PA7 subfamilies, were involved in their production. Importantly, the transcriptional activities of the L1 antisense promoters and of their host loci were coupled. Accordingly, we detected LCT-producing L1 retrotransposons mainly in transcriptionally active genes and genomic loci. Moreover, changes in the host genomic locus expression level in glioma were associated with a similar change in LCT expression level, regardless of the L1 promoter methylation status. Our findings support a model in which the host genomic locus transcriptional activity is the main driving force of LCT expression. We hypothesize that this model is more applicable when host gene and LCT are transcribed from the same strand. Oxford University Press 2022-03-17 /pmc/articles/PMC9396940/ /pubmed/35298627 http://dx.doi.org/10.1093/hmg/ddac056 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Pinson, Marie-Elisa
Court, Franck
Masson, Aymeric
Renaud, Yoan
Fantini, Allison
Bacoeur-Ouzillou, Ophélie
Barriere, Marie
Pereira, Bruno
Guichet, Pierre-Olivier
Chautard, Emmanuel
Karayan-Tapon, Lucie
Verrelle, Pierre
Arnaud, Philippe
Vaurs-Barrière, Catherine
L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus
title L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus
title_full L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus
title_fullStr L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus
title_full_unstemmed L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus
title_short L1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus
title_sort l1 chimeric transcripts are expressed in healthy brain and their deregulation in glioma follows that of their host locus
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9396940/
https://www.ncbi.nlm.nih.gov/pubmed/35298627
http://dx.doi.org/10.1093/hmg/ddac056
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