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The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388

The conjugative plasmid R388 and a number of other plasmids carry an operon, stbABC, adjacent to the origin of conjugative transfer. We investigated the role of the stbA, stbB, and stbC genes. Deletion of stbA affected both conjugation and stability. It led to a 50-fold increase in R388 transfer fre...

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Autores principales: Guynet, Catherine, Cuevas, Ana, Moncalián, Gabriel, de la Cruz, Fernando
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098194/
https://www.ncbi.nlm.nih.gov/pubmed/21625564
http://dx.doi.org/10.1371/journal.pgen.1002073
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author Guynet, Catherine
Cuevas, Ana
Moncalián, Gabriel
de la Cruz, Fernando
author_facet Guynet, Catherine
Cuevas, Ana
Moncalián, Gabriel
de la Cruz, Fernando
author_sort Guynet, Catherine
collection PubMed
description The conjugative plasmid R388 and a number of other plasmids carry an operon, stbABC, adjacent to the origin of conjugative transfer. We investigated the role of the stbA, stbB, and stbC genes. Deletion of stbA affected both conjugation and stability. It led to a 50-fold increase in R388 transfer frequency, as well as to high plasmid loss. In contrast, deletion of stbB abolished conjugation but provoked no change in plasmid stability. Deletion of stbC showed no effect, neither in conjugation nor in stability. Deletion of the entire stb operon had no effect on conjugation, which remained as in the wild-type plasmid, but led to a plasmid loss phenotype similar to that of the R388ΔstbA mutant. We concluded that StbA is required for plasmid stability and that StbA and StbB control conjugation. We next observed the intracellular positioning of R388 DNA molecules and showed that they localize as discrete foci evenly distributed in live Escherichia coli cells. Plasmid instability of the R388ΔΔstbA mutant correlated with aberrant localization of the plasmid DNA molecules as clusters, either at one cell pole, at both poles, or at the cell center. In contrast, plasmid molecules in the R388ΔΔstbB mutant were mostly excluded from the cell poles. Thus, results indicate that defects in both plasmid maintenance and transfer are a consequence of variations in the intracellular positioning of plasmid DNA. We propose that StbA and StbB constitute an atypical plasmid stabilization system that reconciles two modes of plasmid R388 physiology: a maintenance mode (replication and segregation) and a propagation mode (conjugation). The consequences of this novel concept in plasmid physiology will be discussed.
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spelling pubmed-30981942011-05-27 The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388 Guynet, Catherine Cuevas, Ana Moncalián, Gabriel de la Cruz, Fernando PLoS Genet Research Article The conjugative plasmid R388 and a number of other plasmids carry an operon, stbABC, adjacent to the origin of conjugative transfer. We investigated the role of the stbA, stbB, and stbC genes. Deletion of stbA affected both conjugation and stability. It led to a 50-fold increase in R388 transfer frequency, as well as to high plasmid loss. In contrast, deletion of stbB abolished conjugation but provoked no change in plasmid stability. Deletion of stbC showed no effect, neither in conjugation nor in stability. Deletion of the entire stb operon had no effect on conjugation, which remained as in the wild-type plasmid, but led to a plasmid loss phenotype similar to that of the R388ΔstbA mutant. We concluded that StbA is required for plasmid stability and that StbA and StbB control conjugation. We next observed the intracellular positioning of R388 DNA molecules and showed that they localize as discrete foci evenly distributed in live Escherichia coli cells. Plasmid instability of the R388ΔΔstbA mutant correlated with aberrant localization of the plasmid DNA molecules as clusters, either at one cell pole, at both poles, or at the cell center. In contrast, plasmid molecules in the R388ΔΔstbB mutant were mostly excluded from the cell poles. Thus, results indicate that defects in both plasmid maintenance and transfer are a consequence of variations in the intracellular positioning of plasmid DNA. We propose that StbA and StbB constitute an atypical plasmid stabilization system that reconciles two modes of plasmid R388 physiology: a maintenance mode (replication and segregation) and a propagation mode (conjugation). The consequences of this novel concept in plasmid physiology will be discussed. Public Library of Science 2011-05-19 /pmc/articles/PMC3098194/ /pubmed/21625564 http://dx.doi.org/10.1371/journal.pgen.1002073 Text en Guynet 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
Guynet, Catherine
Cuevas, Ana
Moncalián, Gabriel
de la Cruz, Fernando
The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388
title The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388
title_full The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388
title_fullStr The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388
title_full_unstemmed The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388
title_short The stb Operon Balances the Requirements for Vegetative Stability and Conjugative Transfer of Plasmid R388
title_sort stb operon balances the requirements for vegetative stability and conjugative transfer of plasmid r388
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098194/
https://www.ncbi.nlm.nih.gov/pubmed/21625564
http://dx.doi.org/10.1371/journal.pgen.1002073
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