Type VI secretion systems are bacterial virulence-associated nanomachines composed of proteins that are evolutionarily related to components of bacteriophage tails. Here we show that protein secretion by the type VI secretion system of Vibrio cholerae requires the action of a dynamic intracellular tubular structure that is structurally and functionally homologous to contractile phage tail sheath. Time-lapse fluorescence light microscopy reveals that sheaths of the type VI secretion system cycle between assembly, quick contraction, disassembly and re-assembly. Whole-cell electron cryotomography further shows that the sheaths appear as long tubular structures in either extended or contracted conformations that are connected to the inner membr...
The bacterial Type VI secretion system (T6SS) assembles from three major parts: a membrane complex t...
<div><p>The Type VI secretion system (T6SS) is a widespread weapon dedicated to the delivery of toxi...
International audienceBacteria use multiple mechanisms to secrete proteins across their envelope and...
Type VI secretion systems are bacterial virulence-associated nanomachines composed of proteins that ...
SummaryBacteria use rapid contraction of a long sheath of the type VI secretion system (T6SS) to del...
Bacteria use rapid contraction of a long sheath of the type VI secretion system (T6SS) to deliver ef...
Bacteria use rapid contraction of a long sheath of the type VI secretion system (T6SS) to deliver ef...
The bacterial Type VI secretion system (T6SS) delivers proteins into target cells using fast contrac...
The bacterial type VI secretion system is a multicomponent molecular machine directed against eukary...
SummaryThe bacterial type VI secretion system is a multicomponent molecular machine directed against...
The bacterial type VI secretion system (T6SS) uses contraction of a long sheath to quickly thrust a ...
The bacterial type VI secretion system (T6SS) uses contraction of a long sheath to quickly thrust a ...
International audienceThe Type VI secretion system (T6SS) delivers protein effectors to diverse cell...
Type VI secretion systems (T6SSs) are newly identified contractile nanomachines that translocate eff...
SummaryType VI secretion systems (T6SSs) are newly identified contractile nanomachines that transloc...
The bacterial Type VI secretion system (T6SS) assembles from three major parts: a membrane complex t...
<div><p>The Type VI secretion system (T6SS) is a widespread weapon dedicated to the delivery of toxi...
International audienceBacteria use multiple mechanisms to secrete proteins across their envelope and...
Type VI secretion systems are bacterial virulence-associated nanomachines composed of proteins that ...
SummaryBacteria use rapid contraction of a long sheath of the type VI secretion system (T6SS) to del...
Bacteria use rapid contraction of a long sheath of the type VI secretion system (T6SS) to deliver ef...
Bacteria use rapid contraction of a long sheath of the type VI secretion system (T6SS) to deliver ef...
The bacterial Type VI secretion system (T6SS) delivers proteins into target cells using fast contrac...
The bacterial type VI secretion system is a multicomponent molecular machine directed against eukary...
SummaryThe bacterial type VI secretion system is a multicomponent molecular machine directed against...
The bacterial type VI secretion system (T6SS) uses contraction of a long sheath to quickly thrust a ...
The bacterial type VI secretion system (T6SS) uses contraction of a long sheath to quickly thrust a ...
International audienceThe Type VI secretion system (T6SS) delivers protein effectors to diverse cell...
Type VI secretion systems (T6SSs) are newly identified contractile nanomachines that translocate eff...
SummaryType VI secretion systems (T6SSs) are newly identified contractile nanomachines that transloc...
The bacterial Type VI secretion system (T6SS) assembles from three major parts: a membrane complex t...
<div><p>The Type VI secretion system (T6SS) is a widespread weapon dedicated to the delivery of toxi...
International audienceBacteria use multiple mechanisms to secrete proteins across their envelope and...