Michaela Wenzel
I am a microbiologist interested in antibiotic mechanisms of action and bacterial mechanisms of resistance. My group uses fluorescence and electron microscopy together with proteomic and spectroscopic techniques to study the interaction of antimicrobial compounds with bacterial cells with a focus on the bacterial cell envelope. The goal is to provide a deeper fundamental understanding of how antibiotics interact with bacterial cells and use this knowledge to develop more sustainable antibiotics and novel antibacterial strategies.
Visar 52 publikationer
Expanding the DNA damaging potential of artificial metallo-nucleases with click chemistry
Contribution of the Bacillus subtilis ytrGABCDEF operon to antibiotic stress adaptation
The last resort antibiotic daptomycin exhibits two independent antibacterial mechanisms of action
Nature inspired unique antimicrobial peptides from Chilean marine sediments
Membrane depolarization kills dormant Bacillus subtilis cells by generating a lethal dose of ROS
Dual Action of Eeyarestatin 24 on Sec-Dependent Protein Secretion and Bacterial DNA
Roles of Bacterial Mechanosensitive Channels in Infection and Antibiotic Susceptibility
SepF supports the recruitment of the DNA translocase SftA to the Z-ring
Comparison of proteomic responses as global approach to antibiotic mechanism of action elucidation
Control of septum thickness by the curvature of SepF polymers
Do we really understand how antibiotics work?
A How-To Guide for Mode of Action Analysis of Antimicrobial Peptides
Multitarget Approaches against Multiresistant Superbugs
Membranaktive Antibiotika: neue Mechanismen gegen ein altbekanntes Ziel
The novel antibiotic rhodomyrtone traps membrane proteins in vesicles with increased fluidity
Antimicrobial peptide cWFW kills by combining lipid phase separation with autolysis
Editorial: Antimicrobial Peptides - Interaction with Membrane Lipids and Proteins
Effects of rhodomyrtone on Gram-positive bacterial tubulin homologue FtsZ
Free SepF interferes with recruitment of late cell division proteins
Daptomycin inhibits cell envelope synthesis by interfering with fluid membrane microdomains
Purine biosynthesis is the bottleneck in trimethoprim-treated Bacillus subtilis
Influence of lipidation on the mode of action of a small RW-rich antimicrobial peptide
Antimicrobial Peptides from the Aurein Family Form Ion-Selective Pores in Bacillus subtilis
Small cationic antimicrobial peptides delocalize peripheral membrane proteins.
Inorganic and Organometallic Antimicrobial Peptides
Proteomic signatures in antibiotic research
Sandwich and Half-Sandwich Derivatives of Platensimycin: Synthesis and Biological Evaluation
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Visar 13 forskningsprojekt
Nationellt excellenskluster inom AI-driven antibiotikainnovation
Nya strategier för att bryta inneboende antibiotikaresistens av mykobakterier
Återuppliva utvecklingen av läkemedel mot svampinfektioner med övergångsmetaller
Nanoskalig undersökning av bakteriell aktivitet
Single Molecule Imaging för att upptäcka DNA-skador i bakterier orsakas av antibiotika
Kan en membranproteinnanofälla inaktivera antibiotikaeffluxpumpar?
Membranmikrodomäner i jordbakterier
Role of membrane microdomains in bacterial stress adaption and survival
Antibiotika-inducerad frisättning av aminosyror: en ny strategi för antimikrobiell terapi?
Targeting bacterial stress responses - a new antibacterial strategy?
Nya strategier för att bryta inneboende antibiotikaresistens
Interaktion av antibiotika med bakterieceller