International audienceType IV secretion systems are secretion nanomachines spanning the two membranes of Gram-negative bacteria. Three proteins, VirB7, VirB9 and VirB10, assemble into a 1.05 megadalton (MDa) core spanning the inner and outer membranes. This core consists of 14 copies of each of the proteins and forms two layers, the I and O layers, inserting in the inner and outer membrane, respectively. Here we present the crystal structure of a $\sim$0.6 MDa outer-membrane complex containing the entire O-layer. This structure is the largest determined for an outer-membrane channel and is unprecedented in being composed of three proteins. Unexpectedly, this structure identifies VirB10 as the outer-membrane channel with a unique hydrophobic...
All Gram-negative bacteria, mitochondria and chloroplasts have outer membrane proteins (OMPs) that p...
β-barrel outer membrane proteins constitute the second and less well-studied class of transmembrane ...
Type IV secretion systems (T4SS) are used by Gram-negative bacteria to translocate protein and DNA s...
International audienceType IV secretion systems are secretion nanomachines spanning the two membrane...
International audienceBacterial type IV secretion systems translocate virulence factors into eukaryo...
Type IV secretion (T4S) systems are able to transport DNAs and/or proteins through the membranes of ...
International audienceBacteria share their ecological niches with other microbes. The bacterial Type...
Sophisticated nanomachines are used by bacteria for protein secretion. In Gram-negative bacteria, th...
Type IV secretion systems (T4SSs) are important virulence factors used by Gram-negative bacterial pa...
ABSTRACT Sophisticated nanomachines are used by bacteria for protein secretion. In Gram-negative bac...
Type IV secretion (T4S) systems translocate DNA and protein effectors through the double membrane of...
International audienceBacteria have evolved macromolecular machineries that secrete effectors and to...
Gram-negative bacteria are characterized by the presence of an outer membrane (OM), which is a highl...
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resist...
AbstractIntegral membrane proteins come in two types, α-helical and β-barrel proteins. In both types...
All Gram-negative bacteria, mitochondria and chloroplasts have outer membrane proteins (OMPs) that p...
β-barrel outer membrane proteins constitute the second and less well-studied class of transmembrane ...
Type IV secretion systems (T4SS) are used by Gram-negative bacteria to translocate protein and DNA s...
International audienceType IV secretion systems are secretion nanomachines spanning the two membrane...
International audienceBacterial type IV secretion systems translocate virulence factors into eukaryo...
Type IV secretion (T4S) systems are able to transport DNAs and/or proteins through the membranes of ...
International audienceBacteria share their ecological niches with other microbes. The bacterial Type...
Sophisticated nanomachines are used by bacteria for protein secretion. In Gram-negative bacteria, th...
Type IV secretion systems (T4SSs) are important virulence factors used by Gram-negative bacterial pa...
ABSTRACT Sophisticated nanomachines are used by bacteria for protein secretion. In Gram-negative bac...
Type IV secretion (T4S) systems translocate DNA and protein effectors through the double membrane of...
International audienceBacteria have evolved macromolecular machineries that secrete effectors and to...
Gram-negative bacteria are characterized by the presence of an outer membrane (OM), which is a highl...
Conjugation is one of the most important processes that bacteria utilize to spread antibiotic resist...
AbstractIntegral membrane proteins come in two types, α-helical and β-barrel proteins. In both types...
All Gram-negative bacteria, mitochondria and chloroplasts have outer membrane proteins (OMPs) that p...
β-barrel outer membrane proteins constitute the second and less well-studied class of transmembrane ...
Type IV secretion systems (T4SS) are used by Gram-negative bacteria to translocate protein and DNA s...