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FATTY-ACYLATION
Person
Class
Person
Publication
Programmes
doc. RNDr. Radovan Fišer Ph.D.
Academic staff at Faculty of Science
3 study programmes
4 classes
51 publications
Study programme
programme
Microbiology
+2
🇨🇿 PhD. |
Faculty of Science
Classes
class
Practical courses of bacterial physiology
MB140C34 |
Faculty of Science
class
Fluorescence spectroscopy in biology
+1
MB140C75 |
Faculty of Science
class
Structure and Properties of Biopolymers
MB140P37 |
Faculty of Science
Publications
publication
Different roles of conserved tyrosine residues of the acylated domains in folding and activity of RTX toxins
2021 |
Faculty of Science
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
The conserved tyrosine residue 940 plays a key structural role in membrane interaction of Bordetella adenylate cyclase toxin
2017 |
Faculty of Science
publication
Negatively charged residues of the segment linking the enzyme and cytolysin moieties restrict the membrane-permeabilizing capacity of adenylate cyclase toxin
2016 |
Faculty of Science
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
Segments crucial for membrane translocation and pore-forming activity of Bordetella adenylate cyclase toxin
2007 |
Faculty of Science
publication
LEGO-lipophosphonoxins: length of hydrophobic module affects permeabilizing activity in target membranes of different phospholipid composition
2024 |
Faculty of Science
publication
R-Type Fonticins Produced by Pragia fontium Form Large Pores with High Conductance
2023 |
Faculty of Science
publication
H1 helix of colicin U causes phospholipid membrane permeation
2022 |
Faculty of Science, Central Library of Charles University
publication
LEGO-Lipophosphonoxins: A Novel Approach in Designing Membrane Targeting Antimicrobials
2022 |
Faculty of Science
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