Cargando…

A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid

Plasmid conjugation plays a significant role in the dissemination of antibiotic resistance and pathogenicity determinants. Understanding how conjugation is regulated is important to gain insights into these features. Little is known about regulation of conjugation systems present on plasmids from Gr...

Descripción completa

Detalles Bibliográficos
Autores principales: Ramachandran, Gayetri, Singh, Praveen K., Luque-Ortega, Juan Roman, Yuste, Luis, Alfonso, Carlos, Rojo, Fernando, Wu, Ling J., Meijer, Wilfried J. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207663/
https://www.ncbi.nlm.nih.gov/pubmed/25340403
http://dx.doi.org/10.1371/journal.pgen.1004733
_version_ 1782341009651269632
author Ramachandran, Gayetri
Singh, Praveen K.
Luque-Ortega, Juan Roman
Yuste, Luis
Alfonso, Carlos
Rojo, Fernando
Wu, Ling J.
Meijer, Wilfried J. J.
author_facet Ramachandran, Gayetri
Singh, Praveen K.
Luque-Ortega, Juan Roman
Yuste, Luis
Alfonso, Carlos
Rojo, Fernando
Wu, Ling J.
Meijer, Wilfried J. J.
author_sort Ramachandran, Gayetri
collection PubMed
description Plasmid conjugation plays a significant role in the dissemination of antibiotic resistance and pathogenicity determinants. Understanding how conjugation is regulated is important to gain insights into these features. Little is known about regulation of conjugation systems present on plasmids from Gram-positive bacteria. pLS20 is a native conjugative plasmid from the Gram-positive bacterium Bacillus subtilis. Recently the key players that repress and activate pLS20 conjugation have been identified. Here we studied in detail the molecular mechanism regulating the pLS20 conjugation genes using both in vivo and in vitro approaches. Our results show that conjugation is subject to the control of a complex genetic switch where at least three levels of regulation are integrated. The first of the three layers involves overlapping divergent promoters of different strengths regulating expression of the conjugation genes and the key transcriptional regulator Rco(LS20). The second layer involves a triple function of Rco(LS20) being a repressor of the main conjugation promoter and an activator and repressor of its own promoter at low and high concentrations, respectively. The third level of regulation concerns formation of a DNA loop mediated by simultaneous binding of tetrameric Rco(LS20) to two operators, one of which overlaps with the divergent promoters. The combination of these three layers of regulation in the same switch allows the main conjugation promoter to be tightly repressed during conditions unfavorable to conjugation while maintaining the sensitivity to accurately switch on the conjugation genes when appropriate conditions occur. The implications of the regulatory switch and comparison with other genetic switches involving DNA looping are discussed.
format Online
Article
Text
id pubmed-4207663
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-42076632014-10-27 A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid Ramachandran, Gayetri Singh, Praveen K. Luque-Ortega, Juan Roman Yuste, Luis Alfonso, Carlos Rojo, Fernando Wu, Ling J. Meijer, Wilfried J. J. PLoS Genet Research Article Plasmid conjugation plays a significant role in the dissemination of antibiotic resistance and pathogenicity determinants. Understanding how conjugation is regulated is important to gain insights into these features. Little is known about regulation of conjugation systems present on plasmids from Gram-positive bacteria. pLS20 is a native conjugative plasmid from the Gram-positive bacterium Bacillus subtilis. Recently the key players that repress and activate pLS20 conjugation have been identified. Here we studied in detail the molecular mechanism regulating the pLS20 conjugation genes using both in vivo and in vitro approaches. Our results show that conjugation is subject to the control of a complex genetic switch where at least three levels of regulation are integrated. The first of the three layers involves overlapping divergent promoters of different strengths regulating expression of the conjugation genes and the key transcriptional regulator Rco(LS20). The second layer involves a triple function of Rco(LS20) being a repressor of the main conjugation promoter and an activator and repressor of its own promoter at low and high concentrations, respectively. The third level of regulation concerns formation of a DNA loop mediated by simultaneous binding of tetrameric Rco(LS20) to two operators, one of which overlaps with the divergent promoters. The combination of these three layers of regulation in the same switch allows the main conjugation promoter to be tightly repressed during conditions unfavorable to conjugation while maintaining the sensitivity to accurately switch on the conjugation genes when appropriate conditions occur. The implications of the regulatory switch and comparison with other genetic switches involving DNA looping are discussed. Public Library of Science 2014-10-23 /pmc/articles/PMC4207663/ /pubmed/25340403 http://dx.doi.org/10.1371/journal.pgen.1004733 Text en © 2014 Ramachandran 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
Ramachandran, Gayetri
Singh, Praveen K.
Luque-Ortega, Juan Roman
Yuste, Luis
Alfonso, Carlos
Rojo, Fernando
Wu, Ling J.
Meijer, Wilfried J. J.
A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid
title A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid
title_full A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid
title_fullStr A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid
title_full_unstemmed A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid
title_short A Complex Genetic Switch Involving Overlapping Divergent Promoters and DNA Looping Regulates Expression of Conjugation Genes of a Gram-positive Plasmid
title_sort complex genetic switch involving overlapping divergent promoters and dna looping regulates expression of conjugation genes of a gram-positive plasmid
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207663/
https://www.ncbi.nlm.nih.gov/pubmed/25340403
http://dx.doi.org/10.1371/journal.pgen.1004733
work_keys_str_mv AT ramachandrangayetri acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT singhpraveenk acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT luqueortegajuanroman acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT yusteluis acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT alfonsocarlos acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT rojofernando acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT wulingj acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT meijerwilfriedjj acomplexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT ramachandrangayetri complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT singhpraveenk complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT luqueortegajuanroman complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT yusteluis complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT alfonsocarlos complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT rojofernando complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT wulingj complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid
AT meijerwilfriedjj complexgeneticswitchinvolvingoverlappingdivergentpromotersanddnaloopingregulatesexpressionofconjugationgenesofagrampositiveplasmid