Harnessing snake venom cardiotoxins for antimicrobial peptide discovery

Abstract Snake venoms are a rich source of bioactive molecules with considerable potential for drug discovery. Cardiotoxins (CTXs) from cobras ( Naja spp.) are membrane-active venom proteins and promising templates for antimicrobial peptide development. Here, we combined two computational toxin-mining strategies to identify antimicrobial peptide candidates from CTXs. First, AMPA-guided sequence mining was used to detect encrypted antimicrobial regions within CTX sequences. Second, sequence alignment and consensus-sequence analysis were employed to generate peptides from a conserved CTX scaffold. Candidate peptides were prioritised using multiple machine learning- and deep learning-based antimicrobial peptide prediction tools, resulting in fourteen CTX-inspired peptides, including two modified derivatives of CTX-p5. Antimicrobial screening showed limited activity across the peptide panel, with CTX-p5 exhibiting the strongest activity against both Gram-negative and Gram-positive bacteria. Neither truncation nor chemical modification improved its antibacterial potency. Mechanistic studies, including atomic force microscopy, flow cytometry, fluorescence microscopy and membrane permeabilisation assays, indicated that CTX-p5 disrupts bacterial membrane integrity. These findings identify CTXs as a source of antimicrobial peptide templates while highlighting the limitations of current computational prioritisation approaches and the need for more accurate toxin-mining workflows to enhance peptide selection during toxin-inspired drug discovery.

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Publication Details

Journal
npj Drug Discovery.
Published
2026-09-16
DOI
https://doi.org/10.1038/s44386-026-00073-2
Primary Topic
Venomous Animal Envenomation and Studies
Type
article
Field-Weighted Citation Impact
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article

Harnessing snake venom cardiotoxins for antimicrobial peptide discovery

Valeria Castelletto, Glyn Barrett, Ian W. Hamley, Bruno Mendes et al.
npj Drug Discovery.
Venomous Animal Envenomation and Studies
article

Harnessing snake venom cardiotoxins for antimicrobial peptide discovery

Valeria Castelletto, Glyn Barrett, Ian W. Hamley, Bruno Mendes, José R. Almeida
article en

Abstract

Abstract Snake venoms are a rich source of bioactive molecules with considerable potential for drug discovery. Cardiotoxins (CTXs) from cobras ( Naja spp.) are membrane-active venom proteins and promising templates for antimicrobial peptide development. Here, we combined two computational toxin-mining strategies to identify antimicrobial peptide candidates from CTXs. First, AMPA-guided sequence mining was used to detect encrypted antimicrobial regions within CTX sequences. Second, sequence alignment and consensus-sequence analysis were employed to generate peptides from a conserved CTX scaffold. Candidate peptides were prioritised using multiple machine learning- and deep learning-based antimicrobial peptide prediction tools, resulting in fourteen CTX-inspired peptides, including two modified derivatives of CTX-p5. Antimicrobial screening showed limited activity across the peptide panel, with CTX-p5 exhibiting the strongest activity against both Gram-negative and Gram-positive bacteria. Neither truncation nor chemical modification improved its antibacterial potency. Mechanistic studies, including atomic force microscopy, flow cytometry, fluorescence microscopy and membrane permeabilisation assays, indicated that CTX-p5 disrupts bacterial membrane integrity. These findings identify CTXs as a source of antimicrobial peptide templates while highlighting the limitations of current computational prioritisation approaches and the need for more accurate toxin-mining workflows to enhance peptide selection during toxin-inspired drug discovery.

npj Drug Discovery.Vol. 3(1)
Openalex Percentile: Top 11%
Venomous Animal Envenomation and Studies
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Harnessing snake venom cardiotoxins for antimicrobial peptide discovery — Valeria Castelletto, Glyn Barrett, et al. · npj Drug Discovery. (2026) | TGRS Research Map | TGRS