SummaryAutotransporter (AT) proteins are the largest class of extracellular virulence proteins secreted from Gram-negative bacteria. The mechanism by which AT proteins cross the bacterial outer membrane (OM), in the absence of ATP or another external energy source, is unknown. Here we demonstrate a linear correlation between localized regions of stability (ΔGfolding) in the mature virulence protein (the AT “passenger”) and OM secretion efficiency. Destabilizing the C-terminal β-helical domain of a passenger reduced secretion efficiency. In contrast, destabilizing the globular N-terminal domain of a passenger produced a linearly correlated increase in secretion efficiency. Thus, C-terminal passenger stability facilitates OM secretion, wherea...
Autotransporter (AT) proteins provide a diverse array of important virulence functions to Gram-negat...
Autotransporters are bacterial virulence factors that share a common mechanism by which they are tra...
Bacterial autotransporters comprise a C-terminal β-barrel domain, which must be correctly folded and...
Autotransporter proteins are a large family of virulence factors secreted from Gram-negative bacteri...
Autotransporters (ATs) are the largest group of proteins secreted by Gram-negative bacteria and incl...
Protein secretion plays an essential role in the virulence of Gram-negative bacterial pathogens. Gr...
Autotransporters (ATs) of Gram-negative bacteria contain an N-proximal passenger domain that is tran...
Since their discovery more than 20 years ago the autotransporter protein superfamily has been growin...
Autotransporters are a superfamily of proteins secreted by Gram-negative bacteria including many vir...
Autotransport in Gram-negative bacteria denotes the ability of surface-localized proteins to cross t...
Many virulence factors secreted by pathogenic Gram-negative bacteria belong to the autotransporter (...
Autotransporter (AT) proteins provide a diverse array of important virulence functions to Gram-negat...
ABSTRACT Trimeric autotransporter adhesins (TAAs) are a family of bacterial outer membrane (OM) prot...
Many virulence factors secreted by pathogenic Gram-negative bacteria belong to the autotransporter (...
Autotransporters are a superfamily of virulence factors typified by a channel-forming C terminus tha...
Autotransporter (AT) proteins provide a diverse array of important virulence functions to Gram-negat...
Autotransporters are bacterial virulence factors that share a common mechanism by which they are tra...
Bacterial autotransporters comprise a C-terminal β-barrel domain, which must be correctly folded and...
Autotransporter proteins are a large family of virulence factors secreted from Gram-negative bacteri...
Autotransporters (ATs) are the largest group of proteins secreted by Gram-negative bacteria and incl...
Protein secretion plays an essential role in the virulence of Gram-negative bacterial pathogens. Gr...
Autotransporters (ATs) of Gram-negative bacteria contain an N-proximal passenger domain that is tran...
Since their discovery more than 20 years ago the autotransporter protein superfamily has been growin...
Autotransporters are a superfamily of proteins secreted by Gram-negative bacteria including many vir...
Autotransport in Gram-negative bacteria denotes the ability of surface-localized proteins to cross t...
Many virulence factors secreted by pathogenic Gram-negative bacteria belong to the autotransporter (...
Autotransporter (AT) proteins provide a diverse array of important virulence functions to Gram-negat...
ABSTRACT Trimeric autotransporter adhesins (TAAs) are a family of bacterial outer membrane (OM) prot...
Many virulence factors secreted by pathogenic Gram-negative bacteria belong to the autotransporter (...
Autotransporters are a superfamily of virulence factors typified by a channel-forming C terminus tha...
Autotransporter (AT) proteins provide a diverse array of important virulence functions to Gram-negat...
Autotransporters are bacterial virulence factors that share a common mechanism by which they are tra...
Bacterial autotransporters comprise a C-terminal β-barrel domain, which must be correctly folded and...