Global proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames

Cryptic translation of the 'non-coding' genome is increasingly recognised, however its biological significance remains unclear. Laumont et al.employ proteogenomic techniques to map the human immunoproteome, and find that approximately 10% of MHC class I-associated peptides are cryptic.

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Autores principales: Céline M. Laumont, Tariq Daouda, Jean-Philippe Laverdure, Éric Bonneil, Olivier Caron-Lizotte, Marie-Pierre Hardy, Diana P. Granados, Chantal Durette, Sébastien Lemieux, Pierre Thibault, Claude Perreault
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/8e030826a1744d55a142f5a4d3124d1e
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spelling oai:doaj.org-article:8e030826a1744d55a142f5a4d3124d1e2021-12-02T16:57:39ZGlobal proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames10.1038/ncomms102382041-1723https://doaj.org/article/8e030826a1744d55a142f5a4d3124d1e2016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10238https://doaj.org/toc/2041-1723Cryptic translation of the 'non-coding' genome is increasingly recognised, however its biological significance remains unclear. Laumont et al.employ proteogenomic techniques to map the human immunoproteome, and find that approximately 10% of MHC class I-associated peptides are cryptic.Céline M. LaumontTariq DaoudaJean-Philippe LaverdureÉric BonneilOlivier Caron-LizotteMarie-Pierre HardyDiana P. GranadosChantal DuretteSébastien LemieuxPierre ThibaultClaude PerreaultNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-12 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Céline M. Laumont
Tariq Daouda
Jean-Philippe Laverdure
Éric Bonneil
Olivier Caron-Lizotte
Marie-Pierre Hardy
Diana P. Granados
Chantal Durette
Sébastien Lemieux
Pierre Thibault
Claude Perreault
Global proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames
description Cryptic translation of the 'non-coding' genome is increasingly recognised, however its biological significance remains unclear. Laumont et al.employ proteogenomic techniques to map the human immunoproteome, and find that approximately 10% of MHC class I-associated peptides are cryptic.
format article
author Céline M. Laumont
Tariq Daouda
Jean-Philippe Laverdure
Éric Bonneil
Olivier Caron-Lizotte
Marie-Pierre Hardy
Diana P. Granados
Chantal Durette
Sébastien Lemieux
Pierre Thibault
Claude Perreault
author_facet Céline M. Laumont
Tariq Daouda
Jean-Philippe Laverdure
Éric Bonneil
Olivier Caron-Lizotte
Marie-Pierre Hardy
Diana P. Granados
Chantal Durette
Sébastien Lemieux
Pierre Thibault
Claude Perreault
author_sort Céline M. Laumont
title Global proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames
title_short Global proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames
title_full Global proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames
title_fullStr Global proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames
title_full_unstemmed Global proteogenomic analysis of human MHC class I-associated peptides derived from non-canonical reading frames
title_sort global proteogenomic analysis of human mhc class i-associated peptides derived from non-canonical reading frames
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/8e030826a1744d55a142f5a4d3124d1e
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