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Dedieu-Berne, A.

Publications and source records attributed to Dedieu-Berne, A..

2 recordsLinked to original sources

Genetic Determinants of pOXA-48 Plasmid Maintenance and Propagation in Escherichia coli

Conjugative plasmids are the main drivers of antibiotic resistance dissemination contributing to the emergence and extensive spread of multidrug resistance clinical bacterial pathogens. pOXA-48 plasmids, belonging to the IncL group, have emerged as the primary vehicle for carbapenem resistance in Enterobacteriaceae. Despite the problematic prevalence of pOXA-48, most research has focused on epidemiology and genomics, leaving gaps in our understanding of the mechanisms behind its propagation. In this study, we used a transposon sequencing approach to identify genetic elements critical for plasmid stability, replication, and conjugative transfer. Our results identified a novel type I toxin-antitoxin system, new essential maintenance factors, and components of the type IV secretion system and regulatory elements crucial for conjugation. This study advances our understanding of pOXA-48 biology, providing key insights into the genetic factors underlying its successful maintenance and spread in bacterial populations.

microbiology↗

The F pilus serves as a conduit for the DNA during conjugation between physically distant bacteria

Horizontal transfer of F-like plasmids by bacterial conjugation is responsible for disseminating antibiotic resistance and virulence determinants among pathogenic Enterobacteriaceae species, a growing health concern worldwide. Central to this process is the conjugative F pilus, a long extracellular filamentous polymer that extends from the surface of plasmid donor cells, allowing it to probe the environment and make contact with the recipient cell. It is well established the F pilus can retract to bring mating pair cells in tight contact before DNA transfer. However, whether DNA transfer can occur through the extended pilus has been a subject of active debate. In this study, we use live-cell microscopy to show that the F pilus can indeed serve as a conduit for the DNA during transfer between physically distant cells. Our findings enable us to propose a new model for conjugation that revises our understanding of the DNA transport mechanism and the dissemination of drug resistance in complex bacterial communities. One-Sentence SummaryPlasmid DNA passes through the F pilus during conjugational transfer between physically distant bacteria.

microbiology↗