Dual Proteomics Strategies to Dissect and Quantify the Components of Nine Medically Important African Snake Venoms

Redureau, Damien and Amorim, Fernanda Gobbi and Crasset, Thomas and Berger, Imre and Schaffitzel, Christiane and Menzies, Stefanie Kate and Casewell, Nicholas R. and Quinton, Loïc (2025) Dual Proteomics Strategies to Dissect and Quantify the Components of Nine Medically Important African Snake Venoms. Toxins, 17 (5): 243. ISSN 2072-6651

Full text not available from this repository.

Abstract

Snakebite envenoming constitutes a significant global health issue, particularly in Africa, where venomous species such as Echis vipers and Dendroaspis mambas pose substantial risks to human health. This study employs a standardized venomics workflow to comprehensively characterize and comparatively quantify the venom composition of nine medically relevant snake species chosen from among the deadliest in Africa. Utilizing shotgun venom proteomics and venom gland transcriptomics, we report detailed profiles of venom complexity, highlighting the relative abundance of dominant toxin families such as three-finger toxins and Kunitz-type proteins in Dendroaspis, and metalloproteinases and phospholipases A2 in Echis. We delineate here the relative abundance and structural diversity of venom components. Key to our proteomic approach is the implementation of Multi-Enzymatic Limited Digestion (MELD), which improved protein sequence coverage and enabled the identification of rare toxin families such as hyaluronidases and renin-like proteases, by multiplying the overlap of generated peptides and enhancing the characterization of both toxin and non-toxin components within the venoms. The culmination of these efforts resulted in the construction of a detailed toxin database, providing insights into the biological roles and potential therapeutic targets of venom proteins and peptides. The findings here compellingly validate the MELD technique, reinforcing its reproducibility as a valuable characterization approach applied to venomics. This research significantly advances our understanding of venom complexity in African snake species, including representatives of both Viperidae and Elapidae families. By elucidating venom composition and toxin profiles, our study paves the way for the development of targeted therapies aimed at mitigating the morbidity and mortality associated with snakebite envenoming globally.

Item Type:
Journal Article
Journal or Publication Title:
Toxins
Uncontrolled Keywords:
Research Output Funding/yes_externally_funded
Subjects:
?? yes - externally fundedtoxicologyhealth, toxicology and mutagenesis ??
ID Code:
229485
Deposited By:
Deposited On:
19 May 2025 08:45
Refereed?:
Yes
Published?:
Published
Last Modified:
20 May 2025 02:30