Institute for Molecular Bioscience, The University of Queensland, St. Lucia, Qld, Australia.
FEBS J. 2015 Mar;282(5):904-20. doi: 10.1111/febs.13189. Epub 2015 Jan 23.
Spider venoms contain a plethora of insecticidal peptides that act on neuronal ion channels and receptors. Because of their high specificity, potency and stability, these peptides have attracted much attention as potential environmentally friendly insecticides. Although many insecticidal spider venom peptides have been isolated, the molecular target, mode of action and structure of only a small minority have been explored. Sf1a, a 46-residue peptide isolated from the venom of the tube-web spider Segesteria florentina, is insecticidal to a wide range of insects, but nontoxic to vertebrates. In order to investigate its structure and mode of action, we developed an efficient bacterial expression system for the production of Sf1a. We determined a high-resolution solution structure of Sf1a using multidimensional 3D/4D NMR spectroscopy. This revealed that Sf1a is a knottin peptide with an unusually large β-hairpin loop that accounts for a third of the peptide length. This loop is delimited by a fourth disulfide bond that is not commonly found in knottin peptides. We showed, through mutagenesis, that this large loop is functionally critical for insecticidal activity. Sf1a was further shown to be a selective inhibitor of insect voltage-gated sodium channels, consistent with its 'depressant' paralytic phenotype in insects. However, in contrast to the majority of spider-derived sodium channel toxins that function as gating modifiers via interaction with one or more of the voltage-sensor domains, Sf1a appears to act as a pore blocker.
蜘蛛毒液中含有丰富的杀虫肽,作用于神经元离子通道和受体。由于其高特异性、高效性和稳定性,这些肽作为潜在的环保型杀虫剂引起了广泛关注。尽管已经分离出许多杀虫性蜘蛛毒液肽,但只有少数肽的分子靶标、作用方式和结构得到了探索。 Sf1a 是一种 46 个氨基酸残基的肽,从管蛛 Segesteria florentina 的毒液中分离得到,对广泛的昆虫具有杀虫活性,但对脊椎动物无毒。为了研究其结构和作用方式,我们开发了一种高效的细菌表达系统来生产 Sf1a。我们使用多维 3D/4D NMR 光谱学确定了 Sf1a 的高分辨率溶液结构。结果表明,Sf1a 是一种 knottin 肽,具有异常大的β发夹环,占肽长度的三分之一。该环由第四个不常见于 knottin 肽的二硫键限定。通过突变,我们证明了这个大环对于杀虫活性具有功能上的关键作用。Sf1a 进一步被证明是昆虫电压门控钠通道的选择性抑制剂,这与其在昆虫中的“抑制剂”麻痹表型一致。然而,与大多数作为通过与一个或多个电压传感器域相互作用来调节门控的蜘蛛衍生钠通道毒素不同,Sf1a 似乎作为一种通道阻断剂发挥作用。