An Integrated Proteomic and Transcriptomic Analysis Reveals the Venom Complexity of the Bullet Ant Paraponera clavata.
Samira R AiliAxel TouchardRegan HaywardSamuel D RobinsonSandy S PinedaHadrien Lalagüenull MrinaliniIrina VetterEivind A B UndheimR Manjunatha KiniPierre EscoubasMatthew Paul PadulaGarry S A MyersGraham M NicholsonPublished in: Toxins (2020)
A critical hurdle in ant venom proteomic investigations is the lack of databases to comprehensively and specifically identify the sequence and function of venom proteins and peptides. To resolve this, we used venom gland transcriptomics to generate a sequence database that was used to assign the tandem mass spectrometry (MS) fragmentation spectra of venom peptides and proteins to specific transcripts. This was performed alongside a shotgun liquid chromatography-mass spectrometry (LC-MS/MS) analysis of the venom to confirm that these assigned transcripts were expressed as proteins. Through the combined transcriptomic and proteomic investigation of Paraponera clavata venom, we identified four times the number of proteins previously identified using 2D-PAGE alone. In addition to this, by mining the transcriptomic data, we identified several novel peptide sequences for future pharmacological investigations, some of which conform with inhibitor cysteine knot motifs. These types of peptides have the potential to be developed into pharmaceutical or bioinsecticide peptides.
Keyphrases
- liquid chromatography
- mass spectrometry
- tandem mass spectrometry
- high performance liquid chromatography
- gas chromatography
- high resolution mass spectrometry
- ultra high performance liquid chromatography
- amino acid
- single cell
- high resolution
- solid phase extraction
- emergency department
- risk assessment
- machine learning
- electronic health record
- climate change
- data analysis
- drug induced