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New Insectotoxin from Tibellus Oblongus Spider Venom Presents Novel Adaptation of ICK Fold.

Authors :
Korolkova Y
Maleeva E
Mikov A
Lobas A
Solovyeva E
Gorshkov M
Andreev Y
Peigneur S
Tytgat J
Kornilov F
Lushpa V
Mineev K
Kozlov S
Source :
Toxins [Toxins (Basel)] 2021 Jan 04; Vol. 13 (1). Date of Electronic Publication: 2021 Jan 04.
Publication Year :
2021

Abstract

The Tibellus oblongus spider is an active predator that does not spin webs and remains poorly investigated in terms of venom composition. Here, we present a new toxin, named Tbo-IT2, predicted by cDNA analysis of venom glands transcriptome. The presence of Tbo-IT2 in the venom was confirmed by proteomic analyses using the LC-MS and MS/MS techniques. The distinctive features of Tbo-IT2 are the low similarity of primary structure with known animal toxins and the unusual motif of 10 cysteine residues distribution. Recombinant Tbo-IT2 (rTbo-IT2), produced in E. coli using the thioredoxin fusion protein strategy, was structurally and functionally studied. rTbo-IT2 showed insecticidal activity on larvae of the housefly Musca domestica (LD <subscript>100</subscript> 200 μg/g) and no activity on the panel of expressed neuronal receptors and ion channels. The spatial structure of the peptide was determined in a water solution by NMR spectroscopy. The Tbo-IT2 structure is a new example of evolutionary adaptation of a well-known inhibitor cystine knot (ICK) fold to 5 disulfide bonds configuration, which determines additional conformational stability and gives opportunities for insectotoxicity and probably some other interesting features.

Details

Language :
English
ISSN :
2072-6651
Volume :
13
Issue :
1
Database :
MEDLINE
Journal :
Toxins
Publication Type :
Academic Journal
Accession number :
33406803
Full Text :
https://doi.org/10.3390/toxins13010029