ABSTRACT Bacterial type IV secretion systems (T4SSs) mediate the conjugative transfer of mobile genetic elements (MGEs) and their cargoes of antibiotic resistance and virulence genes. Here, we report that the pED208-encoded T4SS (TrapED208) translocates not only this F plasmid but several plasmid-encoded proteins, including ParA, ParB1, single-stranded DNA-binding protein SSB, ParB2, PsiB, and PsiA, to recipient cells. Conjugative protein translocation through the TrapED208 T4SS required engagement of the pED208 relaxosome with the TraD substrate receptor or coupling protein. T4SSs translocate MGEs as single-stranded DNA intermediates (T-strands), which triggers the SOS response in recipient cells. Transfer of pED208 deleted of psiB or ssb,...
In preparation for transfer conjugative type IV secretion systems (T4SS) produce a nucleoprotein add...
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resist...
Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell e...
Bacterial conjugation, a mechanism of horizontal gene transfer, is the major means by which antibiot...
Bacterial conjugation, a mechanism of horizontal gene transfer, is the major means by which antibiot...
Type IV secretion system (T4SS) substrates are recruited through a translocation signal that is poor...
This paper reports an analysis of the functional interactions between type IV secretion systems (T4S...
AbstractThe bacterial type IV secretion systems (T4SSs) translocate DNA and protein substrates to ba...
Bacterial conjugation is a horizontal gene transfer event mediated by the type IV secretion system (...
Type IV secretion systems (T4SS) translocate DNA and protein substrates across prokaryotic cell enve...
The mating pair formation (Mpf) system functions as a secretion machinery for intercellular DNA tran...
AbstractBacterial conjugation disseminates genes among bacteria via a process requiring direct cell ...
Conjugation, the process by which plasmid DNA is transferred from one bacterium to another, is media...
International audienceConjugation is one mechanism for intra-and inter-species horizontal gene trans...
Bacterial conjugation is a horizontal gene transfer event mediated by the type IV secretion system (...
In preparation for transfer conjugative type IV secretion systems (T4SS) produce a nucleoprotein add...
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resist...
Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell e...
Bacterial conjugation, a mechanism of horizontal gene transfer, is the major means by which antibiot...
Bacterial conjugation, a mechanism of horizontal gene transfer, is the major means by which antibiot...
Type IV secretion system (T4SS) substrates are recruited through a translocation signal that is poor...
This paper reports an analysis of the functional interactions between type IV secretion systems (T4S...
AbstractThe bacterial type IV secretion systems (T4SSs) translocate DNA and protein substrates to ba...
Bacterial conjugation is a horizontal gene transfer event mediated by the type IV secretion system (...
Type IV secretion systems (T4SS) translocate DNA and protein substrates across prokaryotic cell enve...
The mating pair formation (Mpf) system functions as a secretion machinery for intercellular DNA tran...
AbstractBacterial conjugation disseminates genes among bacteria via a process requiring direct cell ...
Conjugation, the process by which plasmid DNA is transferred from one bacterium to another, is media...
International audienceConjugation is one mechanism for intra-and inter-species horizontal gene trans...
Bacterial conjugation is a horizontal gene transfer event mediated by the type IV secretion system (...
In preparation for transfer conjugative type IV secretion systems (T4SS) produce a nucleoprotein add...
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resist...
Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell e...