Venomic and antivenomic analyses of the Central American coral snake, Micrurus nigrocinctus (Elapidae)
Loading...
Date
Authors
Fernández Ulate, Julián
Alape Girón, Alberto
Angulo Ugalde, Yamileth
Sanz, Libia
Gutiérrez, José María
Calvete Chornet, Juan José
Lomonte, Bruno
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
The proteome of the venom of Micrurus nigrocinctus (Central American coral snake) was analyzed by a “venomics” approach. Nearly 50 venom peaks were resolved by RP-HPLC, revealing a complex protein composition. Comparative analyses of venoms from individual specimens revealed that such complexity is an intrinsic feature of this species, rather than the sum of variable individual patterns of simpler composition. Proteins related to eight distinct families were identified by MS/MS de novo peptide sequencing or N-terminal sequencing: phospholipase A2 (PLA2), three-finger toxin (3FTx), l-amino acid oxidase, C-type lectin/lectin-like, metalloproteinase, serine proteinase, ohanin, and nucleotidase. PLA2s and 3FTxs are predominant, representing 48 and 38% of the venom proteins, respectively. Within 3FTxs, several isoforms of short-chain α-neurotoxins as well as muscarinic-like toxins and proteins with similarity to long-chain κ-2 bungarotoxin were identified. PLA2s are also highly diverse, and a toxicity screening showed that they mainly exert myotoxicity, although some are lethal and may contribute to the known presynaptic neurotoxicity of this venom. An antivenomic characterization of a therapeutic monospecific M. nigrocinctus equine antivenom revealed differences in immunorecognition of venom proteins that correlate with their molecular mass, with the weakest recognition observed toward 3FTxs.
Description
Embargo por política editorial 2081-01-21
Keywords
Antivenomics, Coral Snake, Elapid toxins, Mass spectrometry, Micrurus nigrocinctus, Proteomics, venomics, Snake venom
Citation
http://pubs.acs.org/doi/abs/10.1021/pr101091a