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IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens

MELOE-1 and MELOE-2, two highly specific melanoma antigens involved in T cell immunosurveillance are produced by IRES-dependent translation of the long « non coding » and polycistronic RNA, meloe. In the present study, we document the expression of an additional ORF, MELOE-3, located in the 5′ regio...

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Autores principales: Charpentier, Maud, Croyal, Mikael, Carbonnelle, Delphine, Fortun, Agnès, Florenceau, Laetitia, Rabu, Catherine, Krempf, Michel, Labarrière, Nathalie, Lang, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5312342/
https://www.ncbi.nlm.nih.gov/pubmed/27486971
http://dx.doi.org/10.18632/oncotarget.10923
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author Charpentier, Maud
Croyal, Mikael
Carbonnelle, Delphine
Fortun, Agnès
Florenceau, Laetitia
Rabu, Catherine
Krempf, Michel
Labarrière, Nathalie
Lang, François
author_facet Charpentier, Maud
Croyal, Mikael
Carbonnelle, Delphine
Fortun, Agnès
Florenceau, Laetitia
Rabu, Catherine
Krempf, Michel
Labarrière, Nathalie
Lang, François
author_sort Charpentier, Maud
collection PubMed
description MELOE-1 and MELOE-2, two highly specific melanoma antigens involved in T cell immunosurveillance are produced by IRES-dependent translation of the long « non coding » and polycistronic RNA, meloe. In the present study, we document the expression of an additional ORF, MELOE-3, located in the 5′ region of meloe. Data from in vitro translation experiments and transfection of melanoma cells with bicistronic vectors documented that MELOE-3 is exclusively translated by the classical cap-dependent pathway. Using a sensitive tandem mass spectrometry technique, we detected the presence of MELOE-3 in total lysates of both melanoma cells and normal melanocytes. This contrasts with our previous observation of the melanoma-restricted expression of MELOE-1 and MELOE-2. Furthermore, in vitro stimulation of PBMC from 6 healthy donors with overlapping peptides from MELOE-1 or MELOE-3 revealed a very scarce MELOE-3 specific T cell repertoire as compared to the abundant repertoire observed against MELOE-1. The poor immunogenicity of MELOE-3 and its expression in melanocytes is consistent with an immune tolerance towards a physiologically expressed protein. In contrast, melanoma-restricted expression of IRES-dependent MELOE-1 may explain its high immunogenicity. In conclusion, within the MELOE family, IRES-dependent antigens represent the best T cell targets for immunotherapy of melanoma.
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spelling pubmed-53123422017-03-06 IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens Charpentier, Maud Croyal, Mikael Carbonnelle, Delphine Fortun, Agnès Florenceau, Laetitia Rabu, Catherine Krempf, Michel Labarrière, Nathalie Lang, François Oncotarget Research Paper MELOE-1 and MELOE-2, two highly specific melanoma antigens involved in T cell immunosurveillance are produced by IRES-dependent translation of the long « non coding » and polycistronic RNA, meloe. In the present study, we document the expression of an additional ORF, MELOE-3, located in the 5′ region of meloe. Data from in vitro translation experiments and transfection of melanoma cells with bicistronic vectors documented that MELOE-3 is exclusively translated by the classical cap-dependent pathway. Using a sensitive tandem mass spectrometry technique, we detected the presence of MELOE-3 in total lysates of both melanoma cells and normal melanocytes. This contrasts with our previous observation of the melanoma-restricted expression of MELOE-1 and MELOE-2. Furthermore, in vitro stimulation of PBMC from 6 healthy donors with overlapping peptides from MELOE-1 or MELOE-3 revealed a very scarce MELOE-3 specific T cell repertoire as compared to the abundant repertoire observed against MELOE-1. The poor immunogenicity of MELOE-3 and its expression in melanocytes is consistent with an immune tolerance towards a physiologically expressed protein. In contrast, melanoma-restricted expression of IRES-dependent MELOE-1 may explain its high immunogenicity. In conclusion, within the MELOE family, IRES-dependent antigens represent the best T cell targets for immunotherapy of melanoma. Impact Journals LLC 2016-07-29 /pmc/articles/PMC5312342/ /pubmed/27486971 http://dx.doi.org/10.18632/oncotarget.10923 Text en Copyright: © 2016 Charpentier et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Charpentier, Maud
Croyal, Mikael
Carbonnelle, Delphine
Fortun, Agnès
Florenceau, Laetitia
Rabu, Catherine
Krempf, Michel
Labarrière, Nathalie
Lang, François
IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens
title IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens
title_full IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens
title_fullStr IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens
title_full_unstemmed IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens
title_short IRES-dependent translation of the long non coding RNA meloe in melanoma cells produces the most immunogenic MELOE antigens
title_sort ires-dependent translation of the long non coding rna meloe in melanoma cells produces the most immunogenic meloe antigens
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5312342/
https://www.ncbi.nlm.nih.gov/pubmed/27486971
http://dx.doi.org/10.18632/oncotarget.10923
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