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Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P

Mitochondrial diseases linked to mutations in mitochondrial (mt) tRNA sequences are common. However, the contributions of these tRNA mutations to the development of diseases is mostly unknown. Mutations may affect interactions with (mt)tRNA maturation enzymes or protein synthesis machinery leading t...

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Autores principales: Karasik, Agnes, Wilhelm, Catherine A., Fierke, Carol A., Koutmos, Markos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7962481/
https://www.ncbi.nlm.nih.gov/pubmed/33380464
http://dx.doi.org/10.1261/rna.077198.120
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author Karasik, Agnes
Wilhelm, Catherine A.
Fierke, Carol A.
Koutmos, Markos
author_facet Karasik, Agnes
Wilhelm, Catherine A.
Fierke, Carol A.
Koutmos, Markos
author_sort Karasik, Agnes
collection PubMed
description Mitochondrial diseases linked to mutations in mitochondrial (mt) tRNA sequences are common. However, the contributions of these tRNA mutations to the development of diseases is mostly unknown. Mutations may affect interactions with (mt)tRNA maturation enzymes or protein synthesis machinery leading to mitochondrial dysfunction. In human mitochondria, in most cases the first step of tRNA processing is the removal of the 5′ leader of precursor tRNAs (pre-tRNA) catalyzed by the three-component enzyme, mtRNase P. Additionally, one component of mtRNase P, mitochondrial RNase P protein 1 (MRPP1), catalyzes methylation of the R9 base in pre-tRNAs. Despite the central role of 5′ end processing in mitochondrial tRNA maturation, the link between mtRNase P and diseases is mostly unexplored. Here, we investigate how 11 different human disease-linked mutations in (mt)pre-tRNA(Ile), (mt)pre-tRNA(Leu(UUR)), and (mt)pre-tRNA(Met) affect the activities of mtRNase P. We find that several mutations weaken the pre-tRNA binding affinity (K(D)s are approximately two- to sixfold higher than that of wild-type), while the majority of mutations decrease 5′ end processing and methylation activity catalyzed by mtRNase P (up to ∼55% and 90% reduction, respectively). Furthermore, all of the investigated mutations in (mt)pre-tRNA(Leu(UUR)) alter the tRNA fold which contributes to the partial loss of function of mtRNase P. Overall, these results reveal an etiological link between early steps of (mt)tRNA-substrate processing and mitochondrial disease.
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spelling pubmed-79624812022-04-01 Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P Karasik, Agnes Wilhelm, Catherine A. Fierke, Carol A. Koutmos, Markos RNA Article Mitochondrial diseases linked to mutations in mitochondrial (mt) tRNA sequences are common. However, the contributions of these tRNA mutations to the development of diseases is mostly unknown. Mutations may affect interactions with (mt)tRNA maturation enzymes or protein synthesis machinery leading to mitochondrial dysfunction. In human mitochondria, in most cases the first step of tRNA processing is the removal of the 5′ leader of precursor tRNAs (pre-tRNA) catalyzed by the three-component enzyme, mtRNase P. Additionally, one component of mtRNase P, mitochondrial RNase P protein 1 (MRPP1), catalyzes methylation of the R9 base in pre-tRNAs. Despite the central role of 5′ end processing in mitochondrial tRNA maturation, the link between mtRNase P and diseases is mostly unexplored. Here, we investigate how 11 different human disease-linked mutations in (mt)pre-tRNA(Ile), (mt)pre-tRNA(Leu(UUR)), and (mt)pre-tRNA(Met) affect the activities of mtRNase P. We find that several mutations weaken the pre-tRNA binding affinity (K(D)s are approximately two- to sixfold higher than that of wild-type), while the majority of mutations decrease 5′ end processing and methylation activity catalyzed by mtRNase P (up to ∼55% and 90% reduction, respectively). Furthermore, all of the investigated mutations in (mt)pre-tRNA(Leu(UUR)) alter the tRNA fold which contributes to the partial loss of function of mtRNase P. Overall, these results reveal an etiological link between early steps of (mt)tRNA-substrate processing and mitochondrial disease. Cold Spring Harbor Laboratory Press 2021-04 /pmc/articles/PMC7962481/ /pubmed/33380464 http://dx.doi.org/10.1261/rna.077198.120 Text en © 2021 Karasik et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by the RNA Society for the first 12 months after the full-issue publication date (see http://rnajournal.cshlp.org/site/misc/terms.xhtml). After 12 months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Article
Karasik, Agnes
Wilhelm, Catherine A.
Fierke, Carol A.
Koutmos, Markos
Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P
title Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P
title_full Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P
title_fullStr Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P
title_full_unstemmed Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P
title_short Disease-associated mutations in mitochondrial precursor tRNAs affect binding, m1R9 methylation, and tRNA processing by mtRNase P
title_sort disease-associated mutations in mitochondrial precursor trnas affect binding, m1r9 methylation, and trna processing by mtrnase p
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7962481/
https://www.ncbi.nlm.nih.gov/pubmed/33380464
http://dx.doi.org/10.1261/rna.077198.120
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