Miyashita Masahiro, Mitani Naoya, Iwamoto Fuki, Hirota Mitsuki, Nakagawa Yoshiaki
Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.
Molecules. 2024 Dec 25;30(1):32. doi: 10.3390/molecules30010032.
Scorpion venom contains various bioactive peptides, many of which exhibit insecticidal activity. The majority of these peptides have a cystine-stabilized α-helix/β-sheet (CSαβ) motif. In addition to these peptides, scorpion venom also contains those with a cystine-stabilized α-helix/α-helix (CSαα) motif, which are known as κ-KTx peptides. Some of these peptides show weak inhibitory activity on mammal potassium channels, but, in many cases, their biological activity remained unknown. In this study, with the aim of discovering novel insecticidal peptides, we synthesized five peptides, which were predicted to adopt a CSαα motif, identified from the venom of the scorpion , and measured their insecticidal activity. As a result, one of the peptides, named LaIT5, exhibited significant insecticidal activity. To the best of our knowledge, this is the first report of insecticidal peptides with a CSαα motif. Furthermore, we synthesized its analogs based on sequence comparisons with other inactive CSαα-motif peptides to identify amino acid residues important for its insecticidal activity. The results indicate that two consecutive His residues at the central region of LaIT5 are particularly important for the activity. Since LaIT5 did not show any toxicity against mice, it was concluded that its action is selective for insects.
蝎毒含有多种生物活性肽,其中许多具有杀虫活性。这些肽大多数具有胱氨酸稳定的α-螺旋/β-折叠(CSαβ)基序。除了这些肽之外,蝎毒还含有具有胱氨酸稳定的α-螺旋/α-螺旋(CSαα)基序的肽,这些肽被称为κ-KTx肽。其中一些肽对哺乳动物钾通道显示出微弱的抑制活性,但在许多情况下,它们的生物学活性仍然未知。在本研究中,为了发现新型杀虫肽,我们合成了五种预测具有CSαα基序的肽,这些肽是从蝎毒中鉴定出来的,并测定了它们的杀虫活性。结果,其中一种名为LaIT5的肽表现出显著的杀虫活性。据我们所知,这是关于具有CSαα基序的杀虫肽的首次报道。此外,我们基于与其他无活性CSαα基序肽的序列比较合成了其类似物,以鉴定对其杀虫活性重要的氨基酸残基。结果表明,LaIT5中心区域的两个连续组氨酸残基对活性尤为重要。由于LaIT5对小鼠未显示任何毒性,因此得出结论,其作用对昆虫具有选择性。