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VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA

The prokaryotic ubiquitous Toxin-Antitoxin (TA) operons encode a stable toxin and an unstable antitoxin. The most accepted hypothesis of the physiological function of the TA system is the reversible cessation of cellular growth under stress conditions. The major TA family, VapBC is present in the sp...

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Autores principales: Lopes, Alexandre P. Y., Lopes, Luana M., Fraga, Tatiana R., Chura-Chambi, Rosa M., Sanson, André L., Cheng, Elisabeth, Nakajima, Erika, Morganti, Ligia, Martins, Elizabeth A. L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4105405/
https://www.ncbi.nlm.nih.gov/pubmed/25047537
http://dx.doi.org/10.1371/journal.pone.0101678
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author Lopes, Alexandre P. Y.
Lopes, Luana M.
Fraga, Tatiana R.
Chura-Chambi, Rosa M.
Sanson, André L.
Cheng, Elisabeth
Nakajima, Erika
Morganti, Ligia
Martins, Elizabeth A. L.
author_facet Lopes, Alexandre P. Y.
Lopes, Luana M.
Fraga, Tatiana R.
Chura-Chambi, Rosa M.
Sanson, André L.
Cheng, Elisabeth
Nakajima, Erika
Morganti, Ligia
Martins, Elizabeth A. L.
author_sort Lopes, Alexandre P. Y.
collection PubMed
description The prokaryotic ubiquitous Toxin-Antitoxin (TA) operons encode a stable toxin and an unstable antitoxin. The most accepted hypothesis of the physiological function of the TA system is the reversible cessation of cellular growth under stress conditions. The major TA family, VapBC is present in the spirochaete Leptospira interrogans. VapBC modules are classified based on the presence of a predicted ribonucleasic PIN domain in the VapC toxin. The expression of the leptospiral VapC in E. coli promotes a strong bacterial growth arrestment, making it difficult to express the recombinant protein. Nevertheless, we showed that long term induction of expression in E. coli enabled the recovery of VapC in inclusion bodies. The recombinant protein was successfully refolded by high hydrostatic pressure, providing a new method to obtain the toxin in a soluble and active form. The structural integrity of the recombinant VapB and VapC proteins was assessed by circular dichroism spectroscopy. Physical interaction between the VapC toxin and the VapB antitoxin was demonstrated in vivo and in vitro by pull down and ligand affinity blotting assays, respectively, thereby indicating the ultimate mechanism by which the activity of the toxin is regulated in bacteria. The predicted model of the leptospiral VapC structure closely matches the Shigella's VapC X-ray structure. In agreement, the ribonuclease activity of the leptospiral VapC was similar to the activity described for Shigella's VapC, as demonstrated by the cleavage of tRNA(fMet) and by the absence of unspecific activity towards E. coli rRNA. This finding suggests that the cleavage of the initiator transfer RNA may represent a common mechanism to a larger group of bacteria and potentially configures a mechanism of post-transcriptional regulation leading to the inhibition of global translation.
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spelling pubmed-41054052014-07-23 VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA Lopes, Alexandre P. Y. Lopes, Luana M. Fraga, Tatiana R. Chura-Chambi, Rosa M. Sanson, André L. Cheng, Elisabeth Nakajima, Erika Morganti, Ligia Martins, Elizabeth A. L. PLoS One Research Article The prokaryotic ubiquitous Toxin-Antitoxin (TA) operons encode a stable toxin and an unstable antitoxin. The most accepted hypothesis of the physiological function of the TA system is the reversible cessation of cellular growth under stress conditions. The major TA family, VapBC is present in the spirochaete Leptospira interrogans. VapBC modules are classified based on the presence of a predicted ribonucleasic PIN domain in the VapC toxin. The expression of the leptospiral VapC in E. coli promotes a strong bacterial growth arrestment, making it difficult to express the recombinant protein. Nevertheless, we showed that long term induction of expression in E. coli enabled the recovery of VapC in inclusion bodies. The recombinant protein was successfully refolded by high hydrostatic pressure, providing a new method to obtain the toxin in a soluble and active form. The structural integrity of the recombinant VapB and VapC proteins was assessed by circular dichroism spectroscopy. Physical interaction between the VapC toxin and the VapB antitoxin was demonstrated in vivo and in vitro by pull down and ligand affinity blotting assays, respectively, thereby indicating the ultimate mechanism by which the activity of the toxin is regulated in bacteria. The predicted model of the leptospiral VapC structure closely matches the Shigella's VapC X-ray structure. In agreement, the ribonuclease activity of the leptospiral VapC was similar to the activity described for Shigella's VapC, as demonstrated by the cleavage of tRNA(fMet) and by the absence of unspecific activity towards E. coli rRNA. This finding suggests that the cleavage of the initiator transfer RNA may represent a common mechanism to a larger group of bacteria and potentially configures a mechanism of post-transcriptional regulation leading to the inhibition of global translation. Public Library of Science 2014-07-21 /pmc/articles/PMC4105405/ /pubmed/25047537 http://dx.doi.org/10.1371/journal.pone.0101678 Text en © 2014 Lopes 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
Lopes, Alexandre P. Y.
Lopes, Luana M.
Fraga, Tatiana R.
Chura-Chambi, Rosa M.
Sanson, André L.
Cheng, Elisabeth
Nakajima, Erika
Morganti, Ligia
Martins, Elizabeth A. L.
VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA
title VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA
title_full VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA
title_fullStr VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA
title_full_unstemmed VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA
title_short VapC from the Leptospiral VapBC Toxin-Antitoxin Module Displays Ribonuclease Activity on the Initiator tRNA
title_sort vapc from the leptospiral vapbc toxin-antitoxin module displays ribonuclease activity on the initiator trna
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4105405/
https://www.ncbi.nlm.nih.gov/pubmed/25047537
http://dx.doi.org/10.1371/journal.pone.0101678
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