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Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis

Oxidative stress occurs when cells are exposed to elevated levels of reactive oxygen species that can damage biological molecules. One bacterial response to oxidative stress involves disulfide bond formation either between protein thiols or between protein thiols and low-molecular-weight (LMW) thiol...

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Autores principales: Campos Guillen, Juan, Jones, George H., Saldaña Gutiérrez, Carlos, Hernández-Flores, José Luis, Cruz Medina, Julio Alfonso, Valenzuela Soto, José Humberto, Pacheco Hernández, Sergio, Romero Gómez, Sergio, Morales Tlalpan, Verónica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5372718/
https://www.ncbi.nlm.nih.gov/pubmed/28117687
http://dx.doi.org/10.3390/biom7010006
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author Campos Guillen, Juan
Jones, George H.
Saldaña Gutiérrez, Carlos
Hernández-Flores, José Luis
Cruz Medina, Julio Alfonso
Valenzuela Soto, José Humberto
Pacheco Hernández, Sergio
Romero Gómez, Sergio
Morales Tlalpan, Verónica
author_facet Campos Guillen, Juan
Jones, George H.
Saldaña Gutiérrez, Carlos
Hernández-Flores, José Luis
Cruz Medina, Julio Alfonso
Valenzuela Soto, José Humberto
Pacheco Hernández, Sergio
Romero Gómez, Sergio
Morales Tlalpan, Verónica
author_sort Campos Guillen, Juan
collection PubMed
description Oxidative stress occurs when cells are exposed to elevated levels of reactive oxygen species that can damage biological molecules. One bacterial response to oxidative stress involves disulfide bond formation either between protein thiols or between protein thiols and low-molecular-weight (LMW) thiols. Bacillithiol was recently identified as a major low-molecular-weight thiol in Bacillus subtilis and related Firmicutes. Four genes (bshA, bshB1, bshB2, and bshC) are involved in bacillithiol biosynthesis. The bshA and bshB1 genes are part of a seven-gene operon (ypjD), which includes the essential gene cca, encoding CCA-tRNA nucleotidyltransferase. The inclusion of cca in the operon containing bacillithiol biosynthetic genes suggests that the integrity of the 3′ terminus of tRNAs may also be important in oxidative stress. The addition of the 3′ terminal CCA sequence by CCA-tRNA nucleotidyltransferase to give rise to a mature tRNA and functional molecules ready for aminoacylation plays an essential role during translation and expression of the genetic code. Any defects in these processes, such as the accumulation of shorter and defective tRNAs under oxidative stress, might exert a deleterious effect on cells. This review summarizes the physiological link between tRNA(Cys) regulation and oxidative stress in Bacillus.
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spelling pubmed-53727182017-04-21 Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis Campos Guillen, Juan Jones, George H. Saldaña Gutiérrez, Carlos Hernández-Flores, José Luis Cruz Medina, Julio Alfonso Valenzuela Soto, José Humberto Pacheco Hernández, Sergio Romero Gómez, Sergio Morales Tlalpan, Verónica Biomolecules Review Oxidative stress occurs when cells are exposed to elevated levels of reactive oxygen species that can damage biological molecules. One bacterial response to oxidative stress involves disulfide bond formation either between protein thiols or between protein thiols and low-molecular-weight (LMW) thiols. Bacillithiol was recently identified as a major low-molecular-weight thiol in Bacillus subtilis and related Firmicutes. Four genes (bshA, bshB1, bshB2, and bshC) are involved in bacillithiol biosynthesis. The bshA and bshB1 genes are part of a seven-gene operon (ypjD), which includes the essential gene cca, encoding CCA-tRNA nucleotidyltransferase. The inclusion of cca in the operon containing bacillithiol biosynthetic genes suggests that the integrity of the 3′ terminus of tRNAs may also be important in oxidative stress. The addition of the 3′ terminal CCA sequence by CCA-tRNA nucleotidyltransferase to give rise to a mature tRNA and functional molecules ready for aminoacylation plays an essential role during translation and expression of the genetic code. Any defects in these processes, such as the accumulation of shorter and defective tRNAs under oxidative stress, might exert a deleterious effect on cells. This review summarizes the physiological link between tRNA(Cys) regulation and oxidative stress in Bacillus. MDPI 2017-01-20 /pmc/articles/PMC5372718/ /pubmed/28117687 http://dx.doi.org/10.3390/biom7010006 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Campos Guillen, Juan
Jones, George H.
Saldaña Gutiérrez, Carlos
Hernández-Flores, José Luis
Cruz Medina, Julio Alfonso
Valenzuela Soto, José Humberto
Pacheco Hernández, Sergio
Romero Gómez, Sergio
Morales Tlalpan, Verónica
Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis
title Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis
title_full Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis
title_fullStr Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis
title_full_unstemmed Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis
title_short Critical Minireview: The Fate of tRNA(Cys) during Oxidative Stress in Bacillus subtilis
title_sort critical minireview: the fate of trna(cys) during oxidative stress in bacillus subtilis
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5372718/
https://www.ncbi.nlm.nih.gov/pubmed/28117687
http://dx.doi.org/10.3390/biom7010006
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