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RTX toxin
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Different modes of membrane permeabilization by two RTX toxins: HlyA from Escherichia coli and CyaA from Bordetella pertussis
2009 |
Faculty of Science
publication
Membrane restructuring by Bordetella pertussis adenylate cyclase toxin, a member of the RTX toxin family
2004 |
Faculty of Science
publication
Kingella kingae RtxA Cytotoxin in the Context of Other RTX Toxins
2022 |
Central Library of Charles University
publication
Rapid Purification of Endotoxin-Free RTX Toxins
2019 |
Faculty of Science, Central Library of Charles University
publication
A conserved tryptophan in the acylated segment of RTX toxins controls their β2- integrin-independent cell penetration
2023 |
Faculty of Science, Central Library of Charles University
publication
Acyltransferase-mediated selection of the length of the fatty acyl chain and of the acylation site governs activation of bacterial RTX toxins
2020 |
Faculty of Science, Central Library of Charles University
publication
Different roles of conserved tyrosine residues of the acylated domains in folding and activity of RTX toxins
2021 |
Faculty of Science
publication
Membrane restructuring by Bordetella pertussis adenylate cyclase toxin, a member of the RTX toxin family
2004 |
First Faculty of Medicine, Faculty of Mathematics and Physics
publication
Differences in Purinergic Amplification of Osmotic Cell Lysis by the Pore-Forming RTX Toxins Bordetella pertussis CyaA and Actinobacillus pleuropneumoniae ApxIA: the Role of Pore Size
2013 |
Faculty of Science
publication
Binding of Kingella kingae RtxA Toxin Depends on Cell Surface Oligosaccharides, but Not on beta(2) Integrins
2020 |
Faculty of Science
publication
Retargeting from the CR3 to the LFA-1 receptor uncovers the adenylyl cyclase enzyme-translocating segment of Bordetella adenylate cyclase toxin
2020 |
Faculty of Science, Central Library of Charles University
publication
Calcium-Driven Folding of RTX Domain β-Rolls Ratchets Translocation of RTX Proteins through Type I Secretion Ducts
2016 |
Faculty of Science, Central Library of Charles University
publication
The conserved tyrosine residue 940 plays a key structural role in membrane interaction of Bordetella adenylate cyclase toxin
2017 |
Faculty of Science