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Published on: April 26, 2024
Structure-based inhibitor design for reshaping bacterial morphology.
Yuri Choi1, Ji Su Park1, Jinshil Kim2,3
1Department of Chemistry, College of Natural Sciences, Seoul National University, Seoul, 08826, Korea.
New inhibitors targeting peptidoglycan hydrolase 3 (Pgp3) disrupt Campylobacter jejuni's spiral shape, reducing its ability to invade host cells. This morphological change offers a novel strategy for preventing bacterial infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Drug Discovery
Background:
- The spiral shape of Campylobacter jejuni is crucial for invading intestinal epithelial cells.
- Targeting this morphology could offer new infection prevention strategies.
Purpose of the Study:
- To design and synthesize hydroxamate-based inhibitors targeting Pgp3.
- To investigate the effect of Pgp3 inhibition on C. jejuni morphology and invasion.
Main Methods:
- Chemical synthesis of hydroxamate-based Pgp3 inhibitors.
- Treatment of C. jejuni with inhibitors and observation of morphological changes.
- Crystal structure determination of Pgp3-inhibitor complexes.
- Kinetic and molecular dynamics simulations.
Main Results:
- Inhibitors successfully targeted Pgp3, inducing a morphological shift from helical to rod shape in C. jejuni.
- This change was comparable to pgp3-deletion mutants.
- Structural and simulation data elucidated inhibitor binding modes in the Pgp3 active site.
- Morphological alteration reduced bacterial invasion capability.
Conclusions:
- Pharmacological inhibition of Pgp3 effectively alters C. jejuni morphology.
- Altering bacterial shape is a viable strategy to reduce host cell invasion.
- This study presents a proof of concept for morphology-based anti-infective approaches.
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