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Antimicrobial Peptides Produced by Selective Pressure Incorporation of Non-canonical Amino Acids
Published on: May 4, 2018
Effect from dinoponeratoxin M-PONTXDq3a arginine and lysine substituted analogues against Staphylococcus aureus
Pedro Nonato da Silva Júnior1, João Victor Serra Nunes1, Bruna Ribeiro Duque1
1Department of Clinical and Toxicological Analysis, School of Pharmacy, Federal University of Ceará, Fortaleza, CE, Brazil.
Abstract:
The growing incidence of methicillin-resistant Staphylococcus aureus (MRSA) infections is associated with increased mortality rates, which has generated interest in the development of antimicrobial peptides (AMP), such as those found in the giant ant Dinoponera quadríceps. In order to improve the net positive charge and the antibacterial activity of the AMP, amino acids with positive side chain single substituted analogues have been proposed, mainly arginine or lysine. The present work aims to study the antimicrobial activity of the analogues of M-PONTX-Dq3a, a 23 amino acid AMP identified in the D. quadriceps venom. M-PONTX-Dq3a[1-15], a fragment containing the 15 central amino acids, and eight derivatives of single arginine or lysine substituted analogues were proposed. The antimicrobial activity of peptides was evaluated against Staphylococcus aureus ATCC 6538 P (MSSA) and ATCC 33591 (MRSA) strains, followed by minimum inhibitory concentration (MIC), minimum lethal concentration (MLC), and minimum biofilm inhibitory concentration (MBIC) measurement. The membrane permeability was then assessed via crystal violet assay and flow cytometry analysis. The effect of exposure time on microbial viability (Time-Kill) was evaluated. Finally, ultrastructural alterations were evaluated through scanning electron microscopy (SEM). Both arginine-substituted peptides [Arg]3M-PONTX-Dq3a[1-15] and [Arg]4M-PONTX-Dq3a[1-15], showed lowest MIC and MLC values (each 0.78 μM). In the biofilm formation assays, the peptide [Arg]3M-PONTX-Dq3a [1-15] showed MBIC of 3.12 μM against the two tested strains. Both peptides were able to alter the membrane permeability approximately by 80%. The treatment with MIC was able to eliminate bacteria after 2 h of contact on the other hand, treatment with half of the MIC, the population of both bacterial strains remained constant for up to 12 h, indicating a possible bacteriostatic effect. The SEM results showed that the treatment with the lowest concentration (0.78 μM) of both peptides caused disruption of the cell membrane, destabilization of the intercellular interaction and the CLM of [Arg]4M-PONTX-Dq3a [1-15] resulted in the complete eradication of the bacteria. Thus, this study describes two AMPs active against MSSA and MRSA and also inhibits the biofilm formation of these stains. This study finds [Arg]3M-PONTX-Dq3a[1-15] and [Arg]4M-PONTX-Dq3a[1-15] as alternative substances to treat resistant and/or biofilm-forming strains.
Insights
Two novel arginine-substituted antimicrobial peptides (AMPs) derived from giant ant venom show potent activity against methicillin-resistant Staphylococcus aureus (MRSA) and inhibit biofilm formation. These AMPs offer a promising alternative for treating resistant bacterial infections.
Area of Science:
- Biochemistry
- Microbiology
- Pharmacology
Background:
- Rising incidence of methicillin-resistant Staphylococcus aureus (MRSA) infections necessitates novel therapeutic strategies.
- Antimicrobial peptides (AMPs) from natural sources, like the giant ant Dinoponera quadríceps, are being investigated for their antibacterial properties.
- Modifying AMPs by substituting amino acids, particularly with arginine or lysine, can enhance their charge and efficacy.
Purpose of the Study:
- To investigate the antimicrobial activity of analogues of M-PONTX-Dq3a, an AMP from D. quadriceps venom.
- To evaluate the efficacy of a 15-amino acid fragment (M-PONTX-Dq3a[1-15]) and its arginine/lysine substituted analogues against MSSA and MRSA.
- To assess the impact of these peptides on bacterial membrane permeability, biofilm formation, and cellular ultrastructure.
Main Methods:
- Synthesis and characterization of M-PONTX-Dq3a[1-15] and eight single-substitution analogues.
- Determination of Minimum Inhibitory Concentration (MIC), Minimum Lethal Concentration (MLC), and Minimum Biofilm Inhibitory Concentration (MBIC).
- Assays for membrane permeability (crystal violet, flow cytometry), time-kill kinetics, and scanning electron microscopy (SEM) for ultrastructural analysis.
Main Results:
- Arginine-substituted peptides [Arg]3M-PONTX-Dq3a[1-15] and [Arg]4M-PONTX-Dq3a[1-15] exhibited the lowest MIC and MLC values (0.78 μM).
- [Arg]3M-PONTX-Dq3a[1-15] demonstrated an MBIC of 3.12 μM against both MSSA and MRSA strains.
- Both peptides significantly increased membrane permeability (approx. 80%) and, at MIC, eradicated bacteria within 2 hours, with SEM revealing cell membrane disruption and complete eradication by [Arg]4M-PONTX-Dq3a[1-15].
Conclusions:
- Two arginine-substituted analogues of M-PONTX-Dq3a show significant antimicrobial activity against MSSA and MRSA.
- These peptides effectively inhibit biofilm formation and disrupt bacterial cell membranes.
- [Arg]3M-PONTX-Dq3a[1-15] and [Arg]4M-PONTX-Dq3a[1-15] represent promising candidates for developing new treatments against resistant and biofilm-forming bacterial strains.
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