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Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations

The 1555 A to G substitution in mitochondrial 12S A‐site rRNA is associated with maternally transmitted deafness of variable penetrance in the absence of otherwise overt disease. Here, we recapitulate the suggested A1555G‐mediated pathomechanism in an experimental model of mitoribosomal mistranslati...

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Autores principales: Akbergenov, Rashid, Duscha, Stefan, Fritz, Ann‐Kristina, Juskeviciene, Reda, Oishi, Naoki, Schmitt, Karen, Shcherbakov, Dimitri, Teo, Youjin, Boukari, Heithem, Freihofer, Pietro, Isnard‐Petit, Patricia, Oettinghaus, Björn, Frank, Stephan, Thiam, Kader, Rehrauer, Hubert, Westhof, Eric, Schacht, Jochen, Eckert, Anne, Wolfer, David, Böttger, Erik C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6216279/
https://www.ncbi.nlm.nih.gov/pubmed/30237157
http://dx.doi.org/10.15252/embr.201846193
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author Akbergenov, Rashid
Duscha, Stefan
Fritz, Ann‐Kristina
Juskeviciene, Reda
Oishi, Naoki
Schmitt, Karen
Shcherbakov, Dimitri
Teo, Youjin
Boukari, Heithem
Freihofer, Pietro
Isnard‐Petit, Patricia
Oettinghaus, Björn
Frank, Stephan
Thiam, Kader
Rehrauer, Hubert
Westhof, Eric
Schacht, Jochen
Eckert, Anne
Wolfer, David
Böttger, Erik C
author_facet Akbergenov, Rashid
Duscha, Stefan
Fritz, Ann‐Kristina
Juskeviciene, Reda
Oishi, Naoki
Schmitt, Karen
Shcherbakov, Dimitri
Teo, Youjin
Boukari, Heithem
Freihofer, Pietro
Isnard‐Petit, Patricia
Oettinghaus, Björn
Frank, Stephan
Thiam, Kader
Rehrauer, Hubert
Westhof, Eric
Schacht, Jochen
Eckert, Anne
Wolfer, David
Böttger, Erik C
author_sort Akbergenov, Rashid
collection PubMed
description The 1555 A to G substitution in mitochondrial 12S A‐site rRNA is associated with maternally transmitted deafness of variable penetrance in the absence of otherwise overt disease. Here, we recapitulate the suggested A1555G‐mediated pathomechanism in an experimental model of mitoribosomal mistranslation by directed mutagenesis of mitoribosomal protein MRPS5. We first establish that the ratio of cysteine/methionine incorporation and read‐through of mtDNA‐encoded MT‐CO1 protein constitute reliable measures of mitoribosomal misreading. Next, we demonstrate that human HEK293 cells expressing mutant V336Y MRPS5 show increased mitoribosomal mistranslation. As for immortalized lymphocytes of individuals with the pathogenic A1555G mutation, we find little changes in the transcriptome of mutant V336Y MRPS5 HEK cells, except for a coordinated upregulation of transcripts for cytoplasmic ribosomal proteins. Homozygous knock‐in mutant Mrps5 V338Y mice show impaired mitochondrial function and a phenotype composed of enhanced susceptibility to noise‐induced hearing damage and anxiety‐related behavioral alterations. The experimental data in V338Y mutant mice point to a key role of mitochondrial translation and function in stress‐related behavioral and physiological adaptations.
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spelling pubmed-62162792018-11-08 Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations Akbergenov, Rashid Duscha, Stefan Fritz, Ann‐Kristina Juskeviciene, Reda Oishi, Naoki Schmitt, Karen Shcherbakov, Dimitri Teo, Youjin Boukari, Heithem Freihofer, Pietro Isnard‐Petit, Patricia Oettinghaus, Björn Frank, Stephan Thiam, Kader Rehrauer, Hubert Westhof, Eric Schacht, Jochen Eckert, Anne Wolfer, David Böttger, Erik C EMBO Rep Articles The 1555 A to G substitution in mitochondrial 12S A‐site rRNA is associated with maternally transmitted deafness of variable penetrance in the absence of otherwise overt disease. Here, we recapitulate the suggested A1555G‐mediated pathomechanism in an experimental model of mitoribosomal mistranslation by directed mutagenesis of mitoribosomal protein MRPS5. We first establish that the ratio of cysteine/methionine incorporation and read‐through of mtDNA‐encoded MT‐CO1 protein constitute reliable measures of mitoribosomal misreading. Next, we demonstrate that human HEK293 cells expressing mutant V336Y MRPS5 show increased mitoribosomal mistranslation. As for immortalized lymphocytes of individuals with the pathogenic A1555G mutation, we find little changes in the transcriptome of mutant V336Y MRPS5 HEK cells, except for a coordinated upregulation of transcripts for cytoplasmic ribosomal proteins. Homozygous knock‐in mutant Mrps5 V338Y mice show impaired mitochondrial function and a phenotype composed of enhanced susceptibility to noise‐induced hearing damage and anxiety‐related behavioral alterations. The experimental data in V338Y mutant mice point to a key role of mitochondrial translation and function in stress‐related behavioral and physiological adaptations. John Wiley and Sons Inc. 2018-09-20 2018-11 /pmc/articles/PMC6216279/ /pubmed/30237157 http://dx.doi.org/10.15252/embr.201846193 Text en © 2018 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Akbergenov, Rashid
Duscha, Stefan
Fritz, Ann‐Kristina
Juskeviciene, Reda
Oishi, Naoki
Schmitt, Karen
Shcherbakov, Dimitri
Teo, Youjin
Boukari, Heithem
Freihofer, Pietro
Isnard‐Petit, Patricia
Oettinghaus, Björn
Frank, Stephan
Thiam, Kader
Rehrauer, Hubert
Westhof, Eric
Schacht, Jochen
Eckert, Anne
Wolfer, David
Böttger, Erik C
Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations
title Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations
title_full Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations
title_fullStr Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations
title_full_unstemmed Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations
title_short Mutant MRPS5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations
title_sort mutant mrps5 affects mitoribosomal accuracy and confers stress‐related behavioral alterations
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6216279/
https://www.ncbi.nlm.nih.gov/pubmed/30237157
http://dx.doi.org/10.15252/embr.201846193
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