Proteopeptidomic, Functional and Immunoreactivity Characterization of Bothrops moojeni Snake Venom: Influence of Snake Gender on Venom Composition

Toxins (Basel). 2018 Apr 26;10(5):177. doi: 10.3390/toxins10050177.

Abstract

Venom composition varies across snakes from all taxonomic levels and is influenced by the snakes’ age, habitat, diet, and sexual dimorphism. The present study reports the first in-depth investigation of venom composition in male and female Bothrops moojeni (B. moojeni) snakes (BmooM and BmooF, respectively) through three proteomics approaches associated with functional, cytotoxic, and immunoreactivity characterization. Compared with BmooM venom, BmooF venom exhibited weaker hyaluronidase, metalloproteinase, and phospholipase activity; stronger recognition by anti-bothropic serum; 1.4-fold stronger cytotoxicity; and greater number of peptides. The increased L-amino acid oxidase expression probably accounted for the stronger immunoreactivity and cytotoxicity of BmooF venom. BmooF and BmooM venom shared only 19% peptides. Some venom components were gender-specific, such as phospholipases B, phospholipase inhibitor, and hyaluronidases in BmooM, and cysteine-rich secretory proteins in BmooF. In conclusion, we describe herein the first proteomics study of B. moojeni snake venom and an in-depth characterization of gender-specific differences in venom composition. Altogether, our findings not only stress the importance of considering the snake’s gender during antivenom production, but also help to identify new potential drugs and biotechnological tools.

Keywords: Bothrops moojeni; proteome; toxins; venomics.

Publication types

  • Comparative Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Bothrops / metabolism*
  • Cell Survival / drug effects
  • Crotalid Venoms / chemistry*
  • Crotalid Venoms / toxicity
  • Female
  • Humans
  • Hyaluronoglucosaminidase / metabolism
  • L-Amino Acid Oxidase / metabolism
  • Leukocytes, Mononuclear / drug effects
  • Male
  • Metalloproteases / metabolism
  • Peptides / metabolism*
  • Phospholipases / metabolism
  • Proteomics
  • Reptilian Proteins / metabolism*
  • Serine Proteases / metabolism

Substances

  • Crotalid Venoms
  • Peptides
  • Reptilian Proteins
  • L-Amino Acid Oxidase
  • Phospholipases
  • Hyaluronoglucosaminidase
  • Metalloproteases
  • Serine Proteases