College of Life Sciences, Wuhan University, Wuhan 430072, China.
College of Life Sciences, Wuhan University, Wuhan 430072, China; Department of Biotechnology, Institute for Life Science, Kim Hyong Jik University of Education, Pyongyang, Democratic People's Republic of Korea.
Int J Biol Macromol. 2021 May 1;178:143-153. doi: 10.1016/j.ijbiomac.2021.02.155. Epub 2021 Feb 23.
Novel degraded potassium channel-modulatory peptides were recently found in thermally processed scorpions, but their pharmacological properties remain unclear. Here, we identified a full-length scorpion toxin (i.e., BmKcug2) and its four truncated analogs (i.e., BmKcug2-P1, BmKcug2-P2, BmKcug2-P3 and BmKcug2-P4) with three conserved disulfide bonds in processed scorpion medicinal material by mass spectrometry. The pharmacological experiments revealed that the recombinant BmKcug2 and BmKcug2-P1 could selectively inhibit the human Kv1.2 and human Kv1.3 potassium channels, while the other three analogs showed a much weaker inhibitory effect on potassium channels. BmKcug2 inhibited hKv1.2 and hKv1.3 channels, with IC values of 45.6 ± 5.8 nM and 215.2 ± 39.7 nM, respectively, and BmKcug2-P1 inhibited hKv1.2 and hKv1.3, with IC values of 89.9 ± 9.6 nM and 1142.4 ± 64.5 nM, respectively. The chromatographic analysis and pharmacological properties of BmKcug2 and BmKcug2-P1 boiled in water for different times further strongly supported their good thermal stability. Structural and functional dissection indicated that one amino acid, i.e., Tyr, determined the differential affinities of BmKcug2 and four BmKcug2 analogs. Altogether, this research investigated the different pharmacological properties of BmKcug2 and its truncated analogs, and the findings highlighted the diversity of K channel blockers from various scorpion species through thermal processing.
最近在经过热处理的蝎子中发现了新型的钾通道调制肽,但它们的药理特性尚不清楚。在这里,我们通过质谱法从加工过的蝎子药材中鉴定出一种全长蝎子毒素(即 BmKcug2)及其四个截断类似物(即 BmKcug2-P1、BmKcug2-P2、BmKcug2-P3 和 BmKcug2-P4),它们都具有三个保守的二硫键。药理实验表明,重组 BmKcug2 和 BmKcug2-P1 可以选择性抑制人 Kv1.2 和人 Kv1.3 钾通道,而其他三个类似物对钾通道的抑制作用则要弱得多。BmKcug2 抑制 hKv1.2 和 hKv1.3 通道的 IC 值分别为 45.6 ± 5.8 nM 和 215.2 ± 39.7 nM,BmKcug2-P1 抑制 hKv1.2 和 hKv1.3 的 IC 值分别为 89.9 ± 9.6 nM 和 1142.4 ± 64.5 nM。BmKcug2 和 BmKcug2-P1 在水中煮沸不同时间后的色谱分析和药理性质进一步强烈支持了它们良好的热稳定性。结构和功能剖析表明,一个氨基酸,即 Tyr,决定了 BmKcug2 和四个 BmKcug2 类似物的不同亲和力。总之,本研究调查了 BmKcug2 及其截断类似物的不同药理特性,研究结果突出了通过热处理从不同蝎子物种中获得的 K 通道阻滞剂的多样性。