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A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function

In this report, we investigated the pathophysiology of a novel hypertension-associated mitochondrial tRNA(Ala) 5655A → G (m.5655A → G) mutation. The destabilization of a highly conserved base pairing (A1-U72) at the aminoacyl acceptor stem by an m.5655A → G mutation altered the tRNA(Ala) function. A...

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Autores principales: Jiang, Pingping, Wang, Meng, Xue, Ling, Xiao, Yun, Yu, Jialing, Wang, Hui, Yao, Juan, Liu, Hao, Peng, Yanyan, Liu, Hanqing, Li, Haiying, Chen, Ye, Guan, Min-Xin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4936059/
https://www.ncbi.nlm.nih.gov/pubmed/27161322
http://dx.doi.org/10.1128/MCB.00199-16
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author Jiang, Pingping
Wang, Meng
Xue, Ling
Xiao, Yun
Yu, Jialing
Wang, Hui
Yao, Juan
Liu, Hao
Peng, Yanyan
Liu, Hanqing
Li, Haiying
Chen, Ye
Guan, Min-Xin
author_facet Jiang, Pingping
Wang, Meng
Xue, Ling
Xiao, Yun
Yu, Jialing
Wang, Hui
Yao, Juan
Liu, Hao
Peng, Yanyan
Liu, Hanqing
Li, Haiying
Chen, Ye
Guan, Min-Xin
author_sort Jiang, Pingping
collection PubMed
description In this report, we investigated the pathophysiology of a novel hypertension-associated mitochondrial tRNA(Ala) 5655A → G (m.5655A → G) mutation. The destabilization of a highly conserved base pairing (A1-U72) at the aminoacyl acceptor stem by an m.5655A → G mutation altered the tRNA(Ala) function. An in vitro processing analysis showed that the m.5655A → G mutation reduced the efficiency of tRNA(Ala) precursor 5′ end cleavage catalyzed by RNase P. By using cybrids constructed by transferring mitochondria from lymphoblastoid cell lines derived from a Chinese family into mitochondrial DNA (mtDNA)-less (ρ(o)) cells, we showed a 41% reduction in the steady-state level of tRNA(Ala) in mutant cybrids. The mutation caused an improperly aminoacylated tRNA(Ala), as suggested by aberrantly aminoacylated tRNA(Ala) and slower electrophoretic mobility of mutated tRNA. A failure in tRNA(Ala) metabolism contributed to variable reductions in six mtDNA-encoded polypeptides in mutant cells, ranging from 21% to 37.5%, with an average of a 29.1% reduction, compared to levels of the controls. The impaired translation caused reduced activities of mitochondrial respiration chains. Furthermore, marked decreases in the levels of mitochondrial ATP and membrane potential were observed in mutant cells. These caused increases in the production of reactive oxygen species in the mutant cybrids. The data provide evidence for the association of the tRNA(Ala) 5655A → G mutation with hypertension.
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spelling pubmed-49360592016-07-26 A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function Jiang, Pingping Wang, Meng Xue, Ling Xiao, Yun Yu, Jialing Wang, Hui Yao, Juan Liu, Hao Peng, Yanyan Liu, Hanqing Li, Haiying Chen, Ye Guan, Min-Xin Mol Cell Biol Articles In this report, we investigated the pathophysiology of a novel hypertension-associated mitochondrial tRNA(Ala) 5655A → G (m.5655A → G) mutation. The destabilization of a highly conserved base pairing (A1-U72) at the aminoacyl acceptor stem by an m.5655A → G mutation altered the tRNA(Ala) function. An in vitro processing analysis showed that the m.5655A → G mutation reduced the efficiency of tRNA(Ala) precursor 5′ end cleavage catalyzed by RNase P. By using cybrids constructed by transferring mitochondria from lymphoblastoid cell lines derived from a Chinese family into mitochondrial DNA (mtDNA)-less (ρ(o)) cells, we showed a 41% reduction in the steady-state level of tRNA(Ala) in mutant cybrids. The mutation caused an improperly aminoacylated tRNA(Ala), as suggested by aberrantly aminoacylated tRNA(Ala) and slower electrophoretic mobility of mutated tRNA. A failure in tRNA(Ala) metabolism contributed to variable reductions in six mtDNA-encoded polypeptides in mutant cells, ranging from 21% to 37.5%, with an average of a 29.1% reduction, compared to levels of the controls. The impaired translation caused reduced activities of mitochondrial respiration chains. Furthermore, marked decreases in the levels of mitochondrial ATP and membrane potential were observed in mutant cells. These caused increases in the production of reactive oxygen species in the mutant cybrids. The data provide evidence for the association of the tRNA(Ala) 5655A → G mutation with hypertension. American Society for Microbiology 2016-06-29 /pmc/articles/PMC4936059/ /pubmed/27161322 http://dx.doi.org/10.1128/MCB.00199-16 Text en Copyright © 2016 Jiang et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Articles
Jiang, Pingping
Wang, Meng
Xue, Ling
Xiao, Yun
Yu, Jialing
Wang, Hui
Yao, Juan
Liu, Hao
Peng, Yanyan
Liu, Hanqing
Li, Haiying
Chen, Ye
Guan, Min-Xin
A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function
title A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function
title_full A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function
title_fullStr A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function
title_full_unstemmed A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function
title_short A Hypertension-Associated tRNA(Ala) Mutation Alters tRNA Metabolism and Mitochondrial Function
title_sort hypertension-associated trna(ala) mutation alters trna metabolism and mitochondrial function
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4936059/
https://www.ncbi.nlm.nih.gov/pubmed/27161322
http://dx.doi.org/10.1128/MCB.00199-16
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