Bacteriocins are secreted bacterial proteins that selectively kill related strains. Lectin-like bacteriocins are atypical bacteriocins not requiring a cognate immunity factor and have been primarily studied in Pseudomonas. These so-called LlpAs are composed of a tandem of B-lectin domains. One domain interacts with d-rhamnose residues in the common polysaccharide antigen of Pseudomonas lipopolysaccharide (LPS). The other lectin domain is crucial for interference with the outer membrane protein assembly machinery by interacting with surface-exposed loops of its central component BamA. Via genome mining, we identified a second subclass of Pseudomonas lectin-like proteins, termed LlpB, consisting of a single B-lectin domain. We show that these...
Bacteriocins of the LlpA family have previously been characterized in the γ-proteobacteria Pseudomon...
Lectin-like bacteriocins consist of tandem monocot mannose-binding domains and display a genus-speci...
Lectin-like bacteriocins consist of tandem monocot mannose-binding domains and display a genus-speci...
The LlpA protein from Pseudomonas putida represents the prototype of a novel family of antimicrobial...
Lectin-like bacteriocins (LlpAs) are secreted by proteobacteria and selectively kill strains of thei...
Bacteria produce a diverse array of antagonistic compounds to restrict growth of microbial rivals. C...
Pseudomonads are equipped with an arsenal of antagonism-mediating molecules to gain hold in competit...
Soil bacteria produce a plethora of antibacterial compounds that enable them to gain hold in nutrien...
Lectin-like bacteriocins are antibacterial proteins constituted of two structurally similar monocot ...
The LlpA protein from Pseudomonas putida represents the prototype of a new family of antimicrobial a...
Lectin-like bacteriotoxic proteins, identified in several plant-associated bacteria, are able to sel...
Lectin-like bacteriocins of the LlpA family, originally identified in plant-associated bacteria, are...
Pseudomonas is a metabolically versatile genus that has acquired several antagonism-mediating mechan...
Lectin-like bacteriotoxic proteins, identified in several plant-associated bacteria, are able to sel...
Bacteria produce a diverse array of antagonistic compounds to restrict growth of microbial rivals. C...
Bacteriocins of the LlpA family have previously been characterized in the γ-proteobacteria Pseudomon...
Lectin-like bacteriocins consist of tandem monocot mannose-binding domains and display a genus-speci...
Lectin-like bacteriocins consist of tandem monocot mannose-binding domains and display a genus-speci...
The LlpA protein from Pseudomonas putida represents the prototype of a novel family of antimicrobial...
Lectin-like bacteriocins (LlpAs) are secreted by proteobacteria and selectively kill strains of thei...
Bacteria produce a diverse array of antagonistic compounds to restrict growth of microbial rivals. C...
Pseudomonads are equipped with an arsenal of antagonism-mediating molecules to gain hold in competit...
Soil bacteria produce a plethora of antibacterial compounds that enable them to gain hold in nutrien...
Lectin-like bacteriocins are antibacterial proteins constituted of two structurally similar monocot ...
The LlpA protein from Pseudomonas putida represents the prototype of a new family of antimicrobial a...
Lectin-like bacteriotoxic proteins, identified in several plant-associated bacteria, are able to sel...
Lectin-like bacteriocins of the LlpA family, originally identified in plant-associated bacteria, are...
Pseudomonas is a metabolically versatile genus that has acquired several antagonism-mediating mechan...
Lectin-like bacteriotoxic proteins, identified in several plant-associated bacteria, are able to sel...
Bacteria produce a diverse array of antagonistic compounds to restrict growth of microbial rivals. C...
Bacteriocins of the LlpA family have previously been characterized in the γ-proteobacteria Pseudomon...
Lectin-like bacteriocins consist of tandem monocot mannose-binding domains and display a genus-speci...
Lectin-like bacteriocins consist of tandem monocot mannose-binding domains and display a genus-speci...