School of Life Sciences, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
Department of Drug Design and Pharmacology, University of Copenhagen, Jagtvej 162, 2100 Copenhagen, Denmark.
Molecules. 2021 Nov 19;26(22):7007. doi: 10.3390/molecules26227007.
Alterations in the polyamine and amino acid (tyrosine) moieties of philanthotoxin-343 (PhTX-343) were investigated for their effects on the antagonism of nicotinic acetylcholine receptors (nAChRs) isolated from the locust () mushroom body. Through whole-cell patch-clamp recordings, the philanthotoxin analogues in this study were shown to cause inhibition of the inward current when co-applied with acetylcholine (ACh). PhTX-343 (IC = 0.80 μM at -75 mV) antagonised locust nAChRs in a use-dependent manner, suggesting that it acts as an open-channel blocker. The analogue in which both the secondary amine functionalities were replaced with methylene groups (i.e., PhTX-12) was ~6-fold more potent (IC (half-maximal inhibitory concentration) = 0.13 μM at -75 mV) than PhTX-343. The analogue containing cyclohexylalanine as a substitute for the tyrosine moiety of PhTX-343 (i.e., Cha-PhTX-343) was also more potent (IC = 0.44 μM at -75 mV). A combination of both alterations to PhTX-343 generated the most potent analogue, i.e., Cha-PhTX-12 (IC = 1.71 nM at -75 mV). Modulation by PhTX-343 and Cha-PhTX-343 fell into two distinct groups, indicating the presence of two pharmacologically distinct nAChR groups in the locust mushroom body. In the first group, all concentrations of PhTX-343 and Cha-PhTX-343 inhibited responses to ACh. In the second group, application of PhTX-343 or Cha-PhTX-343 at concentrations ≤100 nM caused potentiation, while concentrations ≥ 1 μM inhibited responses to ACh. Cha-PhTX-12 may have potential to be developed into insecticidal compounds with a novel mode of action.
本研究通过全细胞膜片钳记录技术,发现所研究的金环胡蜂毒素类似物与乙酰胆碱(ACh)共同应用时会导致内向电流抑制。金环胡蜂毒素 343(在-75 mV 时的 IC 为 0.80 μM)以使用依赖性方式拮抗蝗虫 nAChR,表明其作为开放通道阻滞剂发挥作用。将两个二级胺官能团均用亚甲基取代的类似物(即 PhTX-12)的效力约比金环胡蜂毒素 343 高 6 倍(在-75 mV 时的 IC(半最大抑制浓度)为 0.13 μM)。用环己基丙氨酸替代金环胡蜂毒素 343 的酪氨酸部分的类似物(即 Cha-PhTX-343)也具有更高的效力(在-75 mV 时的 IC 为 0.44 μM)。PhTX-343 的两种改变的组合产生了最有效的类似物,即 Cha-PhTX-12(在-75 mV 时的 IC 为 1.71 nM)。PhTX-343 和 Cha-PhTX-343 的调节分为两组,表明蝗虫蘑菇体中存在两种药理学上不同的 nAChR 群体。在第一组中,PhTX-343 和 Cha-PhTX-343 的所有浓度均抑制 ACh 的反应。在第二组中,应用浓度≤100 nM 的 PhTX-343 或 Cha-PhTX-343 会引起增强作用,而浓度≥1 μM 会抑制 ACh 的反应。Cha-PhTX-12 可能有潜力开发成具有新型作用模式的杀虫剂化合物。