Institut du Thorax, Inserm UMR 1087/CNRS UMR 6291, LabEx "Ion Channels, Science & Therapeutics", F-44007 Nantes, France.
Smartox Biotechnology, 6 rue des Platanes, F-38120 Saint-Egrève, France.
Toxins (Basel). 2019 Jun 21;11(6):367. doi: 10.3390/toxins11060367.
Phlotoxin-1 (PhlTx1) is a peptide previously identified in tarantula venom ( species) that belongs to the inhibitory cysteine-knot (ICK) toxin family. Like many ICK-based spider toxins, the synthesis of PhlTx1 appears particularly challenging, mostly for obtaining appropriate folding and concomitant suitable disulfide bridge formation. Herein, we describe a procedure for the chemical synthesis and the directed sequential disulfide bridge formation of PhlTx1 that allows for a straightforward production of this challenging peptide. We also performed extensive functional testing of PhlTx1 on 31 ion channel types and identified the voltage-gated sodium (Na) channel Na1.7 as the main target of this toxin. Moreover, we compared PhlTx1 activity to 10 other spider toxin activities on an automated patch-clamp system with Chinese Hamster Ovary (CHO) cells expressing human Na1.7. Performing these analyses in reproducible conditions allowed for classification according to the potency of the best natural Na1.7 peptide blockers. Finally, subsequent in vivo testing revealed that intrathecal injection of PhlTx1 reduces the response of mice to formalin in both the acute pain and inflammation phase without signs of neurotoxicity. PhlTx1 is thus an interesting toxin to investigate Na1.7 involvement in cellular excitability and pain.
Phlotoxin-1 (PhlTx1) 是一种先前在狼蛛毒液(物种)中发现的肽,属于抑制性半胱氨酸环(ICK)毒素家族。像许多基于 ICK 的蜘蛛毒素一样,PhlTx1 的合成似乎特别具有挑战性,主要是因为需要获得适当的折叠和伴随的合适的二硫键形成。在此,我们描述了一种 PhlTx1 的化学合成和定向顺序二硫键形成的方法,该方法允许直接生产这种具有挑战性的肽。我们还对 31 种离子通道类型进行了广泛的 PhlTx1 功能测试,并确定电压门控钠 (Na) 通道 Na1.7 是该毒素的主要靶标。此外,我们在表达人 Na1.7 的中国仓鼠卵巢 (CHO) 细胞上的自动化膜片钳系统上比较了 PhlTx1 与其他 10 种蜘蛛毒素的活性。在可重复的条件下进行这些分析,允许根据最佳天然 Na1.7 肽阻滞剂的效力进行分类。最后,随后的体内测试表明,鞘内注射 PhlTx1 可减轻小鼠对福尔马林的反应,无论是在急性疼痛和炎症阶段,都没有神经毒性的迹象。因此,PhlTx1 是一种研究 Na1.7 参与细胞兴奋性和疼痛的有趣毒素。