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Helichrysum populifolium Compounds Inhibit MtrCDE Efflux Pump Transport Protein for the Potential Management of
Vhangani E Mulaudzi1, Idowu J Adeosun1, Adeniyi T Adewumi2
1Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Private Bag X20, Hatfield, Pretoria 0028, South Africa.
Abstract:
The progressive development of resistance in Neisseria gonorrhoeae to almost all available antibiotics has made it crucial to develop novel approaches to tackling multi-drug resistance (MDR). One of the primary causes of antibiotic resistance is the over-expression of the MtrCDE efflux pump protein, making this protein a vital target for fighting against antimicrobial resistance (AMR) in N. gonorrhoeae. This study was aimed at evaluating the potential MtrCDE efflux pump inhibitors (EPIs) and their stability in treating gonorrhoea infection. This is significant because finding novel EPIs would allow for the longer maintenance of antibiotics at therapeutic levels, thereby prolonging the susceptibility of currently available antibiotics. A virtual screening of the selected Helichrysum populifolium compounds (4,5-dicaffeoylquinic acid, apigeninin-7-glucoside, and carvacrol) was conducted to evaluate their potential EPI activity. An integrated computational framework consisting of molecular docking (MD), molecular mechanics generalized born, and surface area solvation (MMGBSA) analysis, molecular dynamics simulations (MDS), and absorption, distribution, metabolism, and excretion (ADME) properties calculations were conducted. Of the tested compounds, 4,5-dicaffeoylquinic acid revealed the highest molecular docking binding energies (-8.8 kcal/mol), equivalent MMGBSA binding free energy (-54.82 kcal/mol), indicative of consistent binding affinity with the MtrD protein, reduced deviations and flexibility (root mean square deviation (RMSD) of 5.65 Å) and, given by root mean square fluctuation (RMSF) of 1.877 Å. Carvacrol revealed a docking score of -6.0 kcal/mol and a MMGBSA computed BFE of -16.69 kcal/mol, demonstrating the lowest binding affinity to the MtrD efflux pump compared to the remaining test compounds. However, the average RMSD (4.45 Å) and RMSF (1.638 Å) of carvacrol-bound MtrD protein showed no significant difference from the unbound MtrD protein, except for the reference compounds, implying consistent MtrD conformation throughout simulations and indicates a desirable feature during drug design. Additionally, carvacrol obeyed the Lipinski rule of five which confirmed the compound's drug-likeness properties making it the most promising EPI candidate based on its combined attributes of a reasonable binding affinity, sustained stability during MDS, its obedience to the Lipinski rule of five and compliance with drug-likeness criteria. An in vitro validation of the potential EPI activities of H. populifolium compounds confirmed that 4,5-dicaffeoylquinic acid reduced the expulsion of the bis-benzimide dye by MtrCDE pump, while carvacrol showed low accumulation compared to other compounds. While 4,5-dicaffeoylquinic acid demonstrated the highest binding affinity in computational analysis and an EPI activity in vitro, it showed lower stability compared to the other compounds, as indicated in MDS. This leaves carvacrol, as a better EPI candidate for the management of gonorrhoea infection.
Insights
Novel compounds from Helichrysum populifolium were evaluated as efflux pump inhibitors (EPIs) to combat multi-drug resistant Neisseria gonorrhoeae. Carvacrol emerged as a promising candidate due to its stability and drug-like properties, offering a potential strategy against gonorrhoea.
Area of Science:
- Pharmacology and Microbiology
- Computational Chemistry
- Natural Product Drug Discovery
Background:
- Neisseria gonorrhoeae exhibits progressive resistance to antibiotics, necessitating novel therapeutic strategies.
- Over-expression of the MtrCDE efflux pump is a key mechanism driving multi-drug resistance (MDR) in N. gonorrhoeae.
- Identifying efflux pump inhibitors (EPIs) can restore antibiotic susceptibility by maintaining therapeutic drug levels.
Purpose of the Study:
- To evaluate Helichrysum populifolium compounds as potential MtrCDE efflux pump inhibitors (EPIs).
- To assess the stability and drug-likeness properties of these compounds for treating gonorrhoea.
- To identify promising EPI candidates for combating antibiotic resistance in N. gonorrhoeae.
Main Methods:
- Virtual screening of H. populifolium compounds (4,5-dicaffeoylquinic acid, apigeninin-7-glucoside, carvacrol) using molecular docking.
- Integrated computational analysis including MMGBSA, molecular dynamics simulations (MDS), and ADME property prediction.
- In vitro validation of EPI activity using a bis-benzimide dye expulsion assay.
Main Results:
- 4,5-dicaffeoylquinic acid showed the highest binding affinity computationally but lower stability in MDS.
- Carvacrol demonstrated reasonable binding affinity, excellent stability during MDS, and obeyed Lipinski's rule of five.
- In vitro assays confirmed EPI activity; carvacrol showed low dye accumulation, indicating reduced efflux.
Conclusions:
- Carvacrol is identified as a promising EPI candidate for managing gonorrhoea due to its balanced binding affinity, stability, and drug-like properties.
- The study highlights the potential of H. populifolium natural products in developing novel strategies against MDR N. gonorrhoeae.
- Further research into carvacrol as an EPI could lead to improved treatments for gonorrhoea infections.
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