Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell envelope in Gram‐negative and Gram‐positive bacteria. They play important roles through the contact‐dependent secretion of effector molecules into eukaryotic hosts and conjugative transfer of mobile DNA elements as well as contact‐independent exchange of DNA with the extracellular milieu. In the last few years, many details on the molecular mechanisms of T4SSs have been elucidated. Exciting structures of T4SS complexes from Escherichia coli plasmids R388 and pKM101, Helicobacter pylori and Legionella pneumophila have been solved. The structure of the F‐pilus was also reported and surprisingly revealed a filament composed of pilin subunits in 1...
Bacteria use type IV secretion (T4S) systems to deliver DNA and protein substrates to a diverse rang...
Type IV secretion systems (T4SSs) are large protein complexes which traverse the cell envelope of ma...
AbstractThe translocation of DNA across biological membranes is an essential process for many living...
Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell e...
Bacteria use type IV secretion (T4S) systems to deliver DNA and protein substrates to a diverse rang...
International audienceThe bacterial type IV secretion systems (T4SSs) are a highly functionally and ...
Type IV secretion systems (T4SSs) are large protein complexes which traverse the cell envelope of ma...
Bacteria have been constantly competing for nutrients and space for billions of years. During this t...
Type IV secretion systems (T4SSs) are nanomachines that Gram-negative, Gram-positive bacteria, and s...
Type IV secretion systems (T4SSs) are multisubunit cell-envelope-spanning structures, ancestrally re...
AbstractThe bacterial type IV secretion systems (T4SSs) translocate DNA and protein substrates to ba...
Type IV secretion (T4S) systems are versatile machines involved in many processes relevant to bacter...
Bacteria have been constantly competing for nutrients and space for billions of years. During this ...
Type IV secretion systems (T4SSs) are multiprotein complexes that transport effector proteins and pr...
Bacteria have been constantly competing for nutrients and space for billions of years. During this t...
Bacteria use type IV secretion (T4S) systems to deliver DNA and protein substrates to a diverse rang...
Type IV secretion systems (T4SSs) are large protein complexes which traverse the cell envelope of ma...
AbstractThe translocation of DNA across biological membranes is an essential process for many living...
Type IV secretion systems (T4SSs) are versatile multiprotein nanomachines spanning the entire cell e...
Bacteria use type IV secretion (T4S) systems to deliver DNA and protein substrates to a diverse rang...
International audienceThe bacterial type IV secretion systems (T4SSs) are a highly functionally and ...
Type IV secretion systems (T4SSs) are large protein complexes which traverse the cell envelope of ma...
Bacteria have been constantly competing for nutrients and space for billions of years. During this t...
Type IV secretion systems (T4SSs) are nanomachines that Gram-negative, Gram-positive bacteria, and s...
Type IV secretion systems (T4SSs) are multisubunit cell-envelope-spanning structures, ancestrally re...
AbstractThe bacterial type IV secretion systems (T4SSs) translocate DNA and protein substrates to ba...
Type IV secretion (T4S) systems are versatile machines involved in many processes relevant to bacter...
Bacteria have been constantly competing for nutrients and space for billions of years. During this ...
Type IV secretion systems (T4SSs) are multiprotein complexes that transport effector proteins and pr...
Bacteria have been constantly competing for nutrients and space for billions of years. During this t...
Bacteria use type IV secretion (T4S) systems to deliver DNA and protein substrates to a diverse rang...
Type IV secretion systems (T4SSs) are large protein complexes which traverse the cell envelope of ma...
AbstractThe translocation of DNA across biological membranes is an essential process for many living...