Effective control of diseases transmitted by Aedes aegypti is primarily achieved through vector control by chemical insecticides. However, the emergence of insecticide resistance in A. aegypti undermines current control efforts. Arachnid venoms are rich in toxins with activity against dipteran insects and we therefore employed a panel of 41 spider and 9 scorpion venoms to screen for mosquitocidal toxins. Using an assay-guided fractionation approach, we isolated two peptides from the venom of the tarantula Lasiodora klugi with activity against adult A. aegypti. The isolated peptides were named U-TRTX-Lk1a and U-TRTX-Lk2a and comprised 41 and 49 residues with monoisotopic masses of 4687.02 Da and 5718.88 Da, respectively. U-TRTX-Lk1a exhibited an LD(50) of 38.3 pmol/g when injected into A. aegypti and its modeled structure conformed to the inhibitor cystine knot motif. U-TRTX-Lk2a has an LD(50) of 45.4 pmol/g against adult A. aegypti and its predicted structure conforms to the disulfide-directed β-hairpin motif. These spider-venom peptides represent potential leads for the development of novel control agents for A. aegypti.
Two Novel Mosquitocidal Peptides Isolated from the Venom of the Bahia Scarlet Tarantula (Lasiodora klugi).
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作者:Ahmed Jamila, Walker Andrew A, Perdomo Hugo D, Guo Shaodong, Nixon Samantha A, Vetter Irina, Okoh Hilary I, Shehu Dalhatu M, Shuaibu Mohammed N, Ndams Iliya S, King Glenn F, Herzig Volker
| 期刊: | Toxins | 影响因子: | 4.000 |
| 时间: | 2023 | 起止号: | 2023 Jun 27; 15(7):418 |
| doi: | 10.3390/toxins15070418 | ||
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