Conjugative plasmid transfer presents a serious threat to human health as the most important means of spreading antibiotic resistance and virulence genes among bacteria. The required direct cell-cell contact is established by a multiprotein complex, the conjugative type IV secretion system (T4SS). The conjugative core complex spans the cellular envelope and serves as a channel for macromolecular secretion. T4SSs of Gram-negative (G-) origin have been studied in great detail. In contrast, T4SSs of Gram-positive (G+) bacteria have only received little attention thus far, despite the medical relevance of numerous G+ pathogens (e.g. enterococci, staphylococci and streptococci). This study provides structural information on the type ...
Type IV secretion systems (TFSS) mediate secretion or direct cell-to-cell transfer of virulence fact...
AbstractThe bacterial type IV secretion systems (T4SSs) translocate DNA and protein substrates to ba...
Bacterial type IV secretion systems (T4SSs) are a versatile group of nanomachines that can horizonta...
Conjugative plasmid transfer presents a serious threat to human health as the most important means ...
Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell e...
Type IV secretion systems (T4SSs) are nanomachines that Gram-negative, Gram-positive bacteria, and s...
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resist...
Bacteria use type IV secretion (T4S) systems to deliver DNA and protein substrates to a diverse rang...
Type IV Secretion Systems (T4SSs) are membrane-spanning multiprotein complexes dedicated to protein ...
Type IV Secretion Systems (T4SSs) are membrane-spanning multiprotein complexes dedicated to protein ...
In den letzten Jahren hat die Resistenz von Bakterien gegenüber Antibiotika so massiv zugenommen, da...
Conjugation, the process by which plasmid DNA is transferred from one bacterium to another, is media...
Type IV secretion systems (T4SS) translocate DNA and protein substrates across prokaryotic cell enve...
Untreatable bacterial infections caused by a perpetual increase of antibiotic resistant strains repr...
Type IV secretion systems (T4SSs) are large protein complexes which traverse the cell envelope of ma...
Type IV secretion systems (TFSS) mediate secretion or direct cell-to-cell transfer of virulence fact...
AbstractThe bacterial type IV secretion systems (T4SSs) translocate DNA and protein substrates to ba...
Bacterial type IV secretion systems (T4SSs) are a versatile group of nanomachines that can horizonta...
Conjugative plasmid transfer presents a serious threat to human health as the most important means ...
Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell e...
Type IV secretion systems (T4SSs) are nanomachines that Gram-negative, Gram-positive bacteria, and s...
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resist...
Bacteria use type IV secretion (T4S) systems to deliver DNA and protein substrates to a diverse rang...
Type IV Secretion Systems (T4SSs) are membrane-spanning multiprotein complexes dedicated to protein ...
Type IV Secretion Systems (T4SSs) are membrane-spanning multiprotein complexes dedicated to protein ...
In den letzten Jahren hat die Resistenz von Bakterien gegenüber Antibiotika so massiv zugenommen, da...
Conjugation, the process by which plasmid DNA is transferred from one bacterium to another, is media...
Type IV secretion systems (T4SS) translocate DNA and protein substrates across prokaryotic cell enve...
Untreatable bacterial infections caused by a perpetual increase of antibiotic resistant strains repr...
Type IV secretion systems (T4SSs) are large protein complexes which traverse the cell envelope of ma...
Type IV secretion systems (TFSS) mediate secretion or direct cell-to-cell transfer of virulence fact...
AbstractThe bacterial type IV secretion systems (T4SSs) translocate DNA and protein substrates to ba...
Bacterial type IV secretion systems (T4SSs) are a versatile group of nanomachines that can horizonta...