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The Antimicrobial Peptide CRAMP-34 Eradicates Escherichia coli Biofilms by Interfering with the kduD-Dependent
Hongzao Yang1,2,3, Jing Xiong1, Sisi Su1
1College of Veterinary Medicine, Southwest University, Chongqing 402460, China.
Abstract:
Background/Objectives: Bacterial biofilms formed by Escherichia coli pose a significant challenge in veterinary medicine due to their intrinsic resistance to antibiotics. Antimicrobial peptides (AMPs) represent a promising alternative. AMPs exert their bactericidal activity by binding to negatively charged phospholipids in bacterial membranes via electrostatic interactions, leading to membrane disruption and rapid cell lysis. Methods: In vitro assays including MIC determination, biofilm eradication testing (crystal violet, colony counts, and CLSM), swimming motility, and EPS quantification were performed. CRISPR/Cas9 was used to construct and complement a kduD mutant. A transposon mutagenesis library was screened for biofilm-defective mutants. In an in vivo murine excisional wound infection model treated with the mouse cathelicidin-related antimicrobial peptide (CRAMP-34), wound closure and bacterial burden were monitored. Gene expression changes were analyzed via RT-qPCR. Results: CRAMP-34 effectively eradicated pre-formed biofilms of a clinically relevant, porcine-origin E. coli strain and promoted wound healing in the murine infection model. We conducted a genome-wide transposon mutagenesis screen, which identified kduD as a critical gene for robust biofilm formation. Functional characterization revealed that kduD deletion drastically impairs flagellar motility and alters exopolysaccharide production, leading to defective biofilm architecture without affecting growth. Notably, the anti-biofilm activity of CRAMP-34 phenocopied aspects of the kduD deletion, including motility inhibition and transcriptional repression of a common set of biofilm-related genes. Conclusions: This research highlights CRAMP-34 as a potent anti-biofilm agent and unveils kduD as a previously unrecognized regulator of E. coli biofilm development, which is also targeted by CRAMP-34.
Insights
The antimicrobial peptide CRAMP-34 effectively eradicates Escherichia coli biofilms and aids wound healing. It targets the kduD gene, a novel regulator of biofilm formation, inhibiting motility and impacting gene expression.
Area of Science:
- Microbiology
- Veterinary Medicine
- Biochemistry
Background:
- Bacterial biofilms, particularly from Escherichia coli, present antibiotic resistance challenges in veterinary medicine.
- Antimicrobial peptides (AMPs) offer a potential solution due to their membrane-disrupting bactericidal mechanism.
- AMPs bind to bacterial membranes via electrostatic interactions, causing cell lysis.
Purpose of the Study:
- To evaluate the efficacy of CRAMP-34 against Escherichia coli biofilms in vitro and in vivo.
- To identify novel genetic regulators of Escherichia coli biofilm formation.
- To elucidate the mechanism of action of CRAMP-34 in combating biofilms.
Main Methods:
- In vitro assays: MIC, biofilm eradication (crystal violet, colony counts, CLSM), motility, EPS quantification.
- CRISPR/Cas9 for kduD mutant construction and complementation.
- Genome-wide transposon mutagenesis screen for biofilm-defective mutants.
- In vivo murine excisional wound infection model with CRAMP-34 treatment.
- RT-qPCR for gene expression analysis.
Main Results:
- CRAMP-34 eradicated pre-formed E. coli biofilms and promoted wound healing in mice.
- The kduD gene was identified as critical for robust biofilm formation.
- kduD deletion impaired flagellar motility and altered exopolysaccharide production, leading to defective biofilms.
- CRAMP-34's anti-biofilm activity mimicked kduD deletion effects, inhibiting motility and repressing biofilm-related genes.
Conclusions:
- CRAMP-34 is a potent anti-biofilm agent against E. coli.
- kduD is a newly identified regulator of E. coli biofilm development.
- CRAMP-34 targets kduD, inhibiting motility and impacting biofilm gene expression.
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