Literature DB >> 29327679

Natural and Artificial Strategies To Control the Conjugative Transmission of Plasmids.

María Getino1,2, Fernando de la Cruz2.   

Abstract

Conjugative plasmids are the main carriers of transmissible antibiotic resistance (AbR) genes. For that reason, strategies to control plasmid transmission have been proposed as potential solutions to prevent AbR dissemination. Natural mechanisms that bacteria employ as defense barriers against invading genomes, such as restriction-modification or CRISPR-Cas systems, could be exploited to control conjugation. Besides, conjugative plasmids themselves display mechanisms to minimize their associated burden or to compete with related or unrelated plasmids. Thus, FinOP systems, composed of FinO repressor protein and FinP antisense RNA, aid plasmids to regulate their own transfer; exclusion systems avoid conjugative transfer of related plasmids to the same recipient bacteria; and fertility inhibition systems block transmission of unrelated plasmids from the same donor cell. Artificial strategies have also been designed to control bacterial conjugation. For instance, intrabodies against R388 relaxase expressed in recipient cells inhibit plasmid R388 conjugative transfer; pIII protein of bacteriophage M13 inhibits plasmid F transmission by obstructing conjugative pili; and unsaturated fatty acids prevent transfer of clinically relevant plasmids in different hosts, promoting plasmid extinction in bacterial populations. Overall, a number of exogenous and endogenous factors have an effect on the sophisticated process of bacterial conjugation. This review puts them together in an effort to offer a wide picture and inform research to control plasmid transmission, focusing on Gram-negative bacteria.

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Year:  2018        PMID: 29327679     DOI: 10.1128/microbiolspec.MTBP-0015-2016

Source DB:  PubMed          Journal:  Microbiol Spectr        ISSN: 2165-0497


  13 in total

1.  New perspectives on mobile genetic elements: a paradigm shift for managing the antibiotic resistance crisis.

Authors:  Timothy M Ghaly; Michael R Gillings
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2021-11-29       Impact factor: 6.237

2.  CRISPR-Cas systems are widespread accessory elements across bacterial and archaeal plasmids.

Authors:  Rafael Pinilla-Redondo; Jakob Russel; David Mayo-Muñoz; Shiraz A Shah; Roger A Garrett; Joseph Nesme; Jonas S Madsen; Peter C Fineran; Søren J Sørensen
Journal:  Nucleic Acids Res       Date:  2022-05-06       Impact factor: 19.160

3.  PifC and Osa, Plasmid Weapons against Rival Conjugative Coupling Proteins.

Authors:  María Getino; Carolina Palencia-Gándara; M Pilar Garcillán-Barcia; Fernando de la Cruz
Journal:  Front Microbiol       Date:  2017-11-16       Impact factor: 5.640

4.  Genomics of Atlantic Forest Mycobacteriaceae strains unravels a mobilome diversity with a novel integrative conjugative element and plasmids harbouring T7SS.

Authors:  Sergio Mascarenhas Morgado; Ana Carolina Paulo Vicente
Journal:  Microb Genom       Date:  2020-07

5.  Indirect Selection against Antibiotic Resistance via Specialized Plasmid-Dependent Bacteriophages.

Authors:  Reetta Penttinen; Cindy Given; Matti Jalasvuori
Journal:  Microorganisms       Date:  2021-01-29

Review 6.  Molecular Mechanisms Influencing Bacterial Conjugation in the Intestinal Microbiota.

Authors:  Kevin Neil; Nancy Allard; Sébastien Rodrigue
Journal:  Front Microbiol       Date:  2021-06-04       Impact factor: 5.640

7.  Molecular epidemiology of carbapenem-resistance plasmids using publicly available sequences.

Authors:  Galen E Card; Brandon D Pickett; Perry G Ridge; Richard A Robison
Journal:  Genome       Date:  2019-09-06       Impact factor: 2.449

Review 8.  Strategies to combat antimicrobial resistance: anti-plasmid and plasmid curing.

Authors:  Michelle M C Buckner; Maria Laura Ciusa; Laura J V Piddock
Journal:  FEMS Microbiol Rev       Date:  2018-11-01       Impact factor: 16.408

9.  Cis-Acting Relaxases Guarantee Independent Mobilization of MOBQ 4 Plasmids.

Authors:  M Pilar Garcillán-Barcia; Raquel Cuartas-Lanza; Ana Cuevas; Fernando de la Cruz
Journal:  Front Microbiol       Date:  2019-11-08       Impact factor: 5.640

10.  HIV Drugs Inhibit Transfer of Plasmids Carrying Extended-Spectrum β-Lactamase and Carbapenemase Genes.

Authors:  Michelle M C Buckner; M Laura Ciusa; Richard W Meek; Alice R Moorey; Gregory E McCallum; Emma L Prentice; Jeremy P Reid; Luke J Alderwick; Alessandro Di Maio; Laura J V Piddock
Journal:  mBio       Date:  2020-02-25       Impact factor: 7.867

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