E-ISSN 2218-6050 | ISSN 2226-4485
 

Research Article


Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide

Maryam Saleh Alhumaidi.


Abstract
Background:
Campylobacteriosis is a common bacterial diarrheal illness frequently associated with poultry consumption and represents a significant problem for public health and the economy. The increasing drug resistance associated with Campylobacter jejuni emphasizes the imperative nature of the situation. The diverse bioactive compounds found in ginger (Zingiber officinale), such as proteins hold a promising and advancing anticampylobacteriosis research.

Aim:
This study investigated the potential of ginger-derived peptides to target key bacterial components involved in antibiotic resistance and virulence.

Methods:
Using computational modeling approaches for modeling ginger-derived peptides and different parameters and targeting efflux pumps (CmeABC and CmeC proteins) and beta-1,3-galactosyltransferase and beta-1,3-Nacetylgalactosaminyltransferase (CgtE) involved in lipooligosaccharide (LOS) biosynthesis.

Results:
Physicochemical analysis revealed varied properties for targeting peptides. The results suggest that gingerderived peptides, particularly AtpH-2, could interact with components of the efflux pump, disrupting bacterial membrane function and enhancing antimicrobial efficacy. Furthermore, the interaction between AtpH-2 and LOS biosynthesis enzymes suggest a possible disruption of LOS production.

Conclusion:
These findings indicate that ginger-derived peptides, especially AtpH-2, could synergistically weaken Campylobacter defenses by interfering with both efflux pump activity and LOS biosynthesis, offering a promising approach for developing novel antibacterial strategies against this zoonotic pathogen. Further research is warranted to elucidate the precise mechanisms of action and validate these in silico predictions.

Key words: Zoonotic pathogen, Efflux pump, Lipooligosaccharide, Antimicrobial peptides, Zingiber officinale, Computational modeling


 
ARTICLE TOOLS
Abstract
PDF Fulltext
How to cite this articleHow to cite this article
Citation Tools
Related Records
 Articles by Maryam Saleh Alhumaidi
on Google
on Google Scholar


How to Cite this Article
Pubmed Style

Maryam Saleh Alhumaidi. Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide. Open Vet J. 2025; 15(6): 2457-2470. doi:10.5455/OVJ.2025.v15.i6.18


Web Style

Maryam Saleh Alhumaidi. Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide. https://www.openveterinaryjournal.com/?mno=240109 [Access: July 05, 2025]. doi:10.5455/OVJ.2025.v15.i6.18


AMA (American Medical Association) Style

Maryam Saleh Alhumaidi. Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide. Open Vet J. 2025; 15(6): 2457-2470. doi:10.5455/OVJ.2025.v15.i6.18



Vancouver/ICMJE Style

Maryam Saleh Alhumaidi. Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide. Open Vet J. (2025), [cited July 05, 2025]; 15(6): 2457-2470. doi:10.5455/OVJ.2025.v15.i6.18



Harvard Style

Maryam Saleh Alhumaidi (2025) Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide. Open Vet J, 15 (6), 2457-2470. doi:10.5455/OVJ.2025.v15.i6.18



Turabian Style

Maryam Saleh Alhumaidi. 2025. Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide. Open Veterinary Journal, 15 (6), 2457-2470. doi:10.5455/OVJ.2025.v15.i6.18



Chicago Style

Maryam Saleh Alhumaidi. "Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide." Open Veterinary Journal 15 (2025), 2457-2470. doi:10.5455/OVJ.2025.v15.i6.18



MLA (The Modern Language Association) Style

Maryam Saleh Alhumaidi. "Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide." Open Veterinary Journal 15.6 (2025), 2457-2470. Print. doi:10.5455/OVJ.2025.v15.i6.18



APA (American Psychological Association) Style

Maryam Saleh Alhumaidi (2025) Computational modeling approach to identify potential anti-Campylobacter peptides from Zingiber officinale targeting efflux pump and lipooligosaccharide. Open Veterinary Journal, 15 (6), 2457-2470. doi:10.5455/OVJ.2025.v15.i6.18