| Literature DB >> 23515844 |
Subhamay Panda1, Goutam Chandra.
Abstract
Snakes are equipped with their venomic armory to tackle different prey and predators in adverse natural world. The venomic composition of snakes is a mix of biologically active proteins and polypeptides. Among different components snake venom cytotoxins and short neurotoxin are non-enzymatic polypeptide candidates with in the venom. These two components structurally resembled to three-finger protein superfamily specific scaffold. Different non-toxin family members of three-finger protein superfamily are involved in different biological roles. In the present study we analyzed the snake venom cytotoxins, short neurotoxins and related non-toxin proteins of different chordates in terms of amino acid sequence level diversification profile, polarity profile of amino acid sequences, conserved pattern of amino acids and phylogenetic relationship of these toxin and nontoxin protein sequences. Sequence alignment analysis demonstrates the polarity specific molecular enrichment strategy for better system adaptivity. Occurrence of amino acid substitution is high in number in toxin sequences. In non-toxin body proteins there are less amino acid substitutions. With the help of conserved residues these proteins maintain the three-finger protein scaffold. Due to system specific adaptation toxin and non-toxin proteins exhibit a varied type of amino acid residue distribution in sequence stretch. Understanding of Natural invention scheme (recruitment of venom proteins from normal body proteins) may help us to develop futuristic engineered bio-molecules with remedial properties.Entities:
Keywords: Amino acid; Evolutionary process; Non-toxin proteins of chordates; Phylogenetic study; Polarity profile; Sequence level diversification; Short neurotoxins; Snake venom cytotoxin
Year: 2013 PMID: 23515844 PMCID: PMC3602882 DOI: 10.6026/97320630009259
Source DB: PubMed Journal: Bioinformation ISSN: 0973-2063
Figure 1Multiple sequence alignment of various snake venom toxin proteins and related non-toxin proteins of other chordates (polarity coloring scheme).
Figure 2Sequence logo representation of snake venom toxin proteins and related non-toxin proteins of other chordates. Sequence logo was created by WebLogo program (http://weblogo.berkeley.edu/).
Figure 3Bayesian phylogenetic analysis of various snake venom toxin proteins and related non-toxin proteins of other chordates.