Cargando…

The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation

Translation fidelity is critical for protein synthesis and to ensure correct cell functioning. Mutations in the protein synthesis machinery or environmental factors that increase synthesis of mistranslated proteins result in cell death and degeneration and are associated with neurodegenerative disea...

Descripción completa

Detalles Bibliográficos
Autores principales: Silva, Raquel M., Duarte, Iven C. N., Paredes, João A., Lima-Costa, Tatiana, Perrot, Michel, Boucherie, Hélian, Goodfellow, Brian J., Gomes, Ana C., Mateus, Denisa D., Moura, Gabriela R., Santos, Manuel A. S.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2667667/
https://www.ncbi.nlm.nih.gov/pubmed/19381334
http://dx.doi.org/10.1371/journal.pone.0005212
_version_ 1782166164301938688
author Silva, Raquel M.
Duarte, Iven C. N.
Paredes, João A.
Lima-Costa, Tatiana
Perrot, Michel
Boucherie, Hélian
Goodfellow, Brian J.
Gomes, Ana C.
Mateus, Denisa D.
Moura, Gabriela R.
Santos, Manuel A. S.
author_facet Silva, Raquel M.
Duarte, Iven C. N.
Paredes, João A.
Lima-Costa, Tatiana
Perrot, Michel
Boucherie, Hélian
Goodfellow, Brian J.
Gomes, Ana C.
Mateus, Denisa D.
Moura, Gabriela R.
Santos, Manuel A. S.
author_sort Silva, Raquel M.
collection PubMed
description Translation fidelity is critical for protein synthesis and to ensure correct cell functioning. Mutations in the protein synthesis machinery or environmental factors that increase synthesis of mistranslated proteins result in cell death and degeneration and are associated with neurodegenerative diseases, cancer and with an increasing number of mitochondrial disorders. Remarkably, mRNA mistranslation plays critical roles in the evolution of the genetic code, can be beneficial under stress conditions in yeast and in Escherichia coli and is an important source of peptides for MHC class I complex in dendritic cells. Despite this, its biology has been overlooked over the years due to technical difficulties in its detection and quantification. In order to shed new light on the biological relevance of mistranslation we have generated codon misreading in Saccharomyces cerevisiae using drugs and tRNA engineering methodologies. Surprisingly, such mistranslation up-regulated the longevity gene PNC1. Similar results were also obtained in cells grown in the presence of amino acid analogues that promote protein misfolding. The overall data showed that PNC1 is a biomarker of mRNA mistranslation and protein misfolding and that PNC1-GFP fusions can be used to monitor these two important biological phenomena in vivo in an easy manner, thus opening new avenues to understand their biological relevance.
format Text
id pubmed-2667667
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-26676672009-04-17 The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation Silva, Raquel M. Duarte, Iven C. N. Paredes, João A. Lima-Costa, Tatiana Perrot, Michel Boucherie, Hélian Goodfellow, Brian J. Gomes, Ana C. Mateus, Denisa D. Moura, Gabriela R. Santos, Manuel A. S. PLoS One Research Article Translation fidelity is critical for protein synthesis and to ensure correct cell functioning. Mutations in the protein synthesis machinery or environmental factors that increase synthesis of mistranslated proteins result in cell death and degeneration and are associated with neurodegenerative diseases, cancer and with an increasing number of mitochondrial disorders. Remarkably, mRNA mistranslation plays critical roles in the evolution of the genetic code, can be beneficial under stress conditions in yeast and in Escherichia coli and is an important source of peptides for MHC class I complex in dendritic cells. Despite this, its biology has been overlooked over the years due to technical difficulties in its detection and quantification. In order to shed new light on the biological relevance of mistranslation we have generated codon misreading in Saccharomyces cerevisiae using drugs and tRNA engineering methodologies. Surprisingly, such mistranslation up-regulated the longevity gene PNC1. Similar results were also obtained in cells grown in the presence of amino acid analogues that promote protein misfolding. The overall data showed that PNC1 is a biomarker of mRNA mistranslation and protein misfolding and that PNC1-GFP fusions can be used to monitor these two important biological phenomena in vivo in an easy manner, thus opening new avenues to understand their biological relevance. Public Library of Science 2009-04-17 /pmc/articles/PMC2667667/ /pubmed/19381334 http://dx.doi.org/10.1371/journal.pone.0005212 Text en Silva 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
Silva, Raquel M.
Duarte, Iven C. N.
Paredes, João A.
Lima-Costa, Tatiana
Perrot, Michel
Boucherie, Hélian
Goodfellow, Brian J.
Gomes, Ana C.
Mateus, Denisa D.
Moura, Gabriela R.
Santos, Manuel A. S.
The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation
title The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation
title_full The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation
title_fullStr The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation
title_full_unstemmed The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation
title_short The Yeast PNC1 Longevity Gene Is Up-Regulated by mRNA Mistranslation
title_sort yeast pnc1 longevity gene is up-regulated by mrna mistranslation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2667667/
https://www.ncbi.nlm.nih.gov/pubmed/19381334
http://dx.doi.org/10.1371/journal.pone.0005212
work_keys_str_mv AT silvaraquelm theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT duarteivencn theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT paredesjoaoa theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT limacostatatiana theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT perrotmichel theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT boucheriehelian theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT goodfellowbrianj theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT gomesanac theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT mateusdenisad theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT mouragabrielar theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT santosmanuelas theyeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT silvaraquelm yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT duarteivencn yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT paredesjoaoa yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT limacostatatiana yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT perrotmichel yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT boucheriehelian yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT goodfellowbrianj yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT gomesanac yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT mateusdenisad yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT mouragabrielar yeastpnc1longevitygeneisupregulatedbymrnamistranslation
AT santosmanuelas yeastpnc1longevitygeneisupregulatedbymrnamistranslation