Shariati Saeedeh, Mafakher Ladan, Shirani Maryam, Baradaran Masoumeh
Toxicology Research Center, Medical Basic Sciences Research Institute, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran; Student Research Committee, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.
Thalassemia & Hemoglobinopathy Research Center, Health Research Institute, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.
Int J Biol Macromol. 2025 Aug;319(Pt 2):145327. doi: 10.1016/j.ijbiomac.2025.145327. Epub 2025 Jun 16.
Kv1.3 channels are associated with autoimmune and neuroinflammatory diseases. Scorpion venom is an excellent source of inhibitors for Kv1.3. Kv1.3, a pivotal voltage-gated potassium channel, has emerged as a critical therapeutic target for combating autoimmune and neuroinflammatory diseases, including multiple sclerosis and rheumatoid arthritis. Some studies have tried to discover highly selective toxins targeting Kv1.3 channels, but it is still challenging. Here, we present a groundbreaking discovery of a potent peptide potassium channel blocker, Meuk7-3, derived from the venom of the scorpion, Mesobuthus crucittii. While similar to other Kv1.3 blockers, Meuk7-3's Lys19 residue may enhance its affinity for the channel. So, we redesigned the Meuk7-3 and generated three analogous, Meuk7-3 A, Meuk7-3B, and Meuk7-3C, to improve its drug-like properties and affinity to Kv1.3. Interaction evaluation with Kv1.3 revealed that Meuk7-3 and all its designed analogous could of Kv1.3's pore through the interaction of Lys19 of the peptide with Tyr447, Tyr797, Tyr1147, and Tyr1497, critical residues located at the channel pore of Kv1.3.However, the stability of the interaction of designed peptides with Kv1.3 was more than Meuk7-3. Binding affinity analysis revealed that all designed peptides had a better binding affinity to Kv1.3 than Meuk7-3. Among the three analogous, Meuk7-3 A was found to have better drug-like properties and interaction situations, including binding energy and affinity to Kv1.3, compared to Meuk-3 native. These findings provide new data for designing highly effective Kv1.3 inhibitors by computational tools for treating autoimmune and inflammatory diseases, although experimental testing is necessary to validate them.
Kv1.3通道与自身免疫性疾病和神经炎症性疾病相关。蝎毒是Kv1.3抑制剂的极佳来源。Kv1.3是一种关键的电压门控钾通道,已成为对抗自身免疫性疾病和神经炎症性疾病(包括多发性硬化症和类风湿性关节炎)的关键治疗靶点。一些研究试图发现靶向Kv1.3通道的高度选择性毒素,但这仍然具有挑战性。在此,我们展示了一项突破性发现,即从蝎子东亚钳蝎毒液中提取的一种强效肽钾通道阻滞剂Meuk7-3。虽然Meuk7-3与其他Kv1.3阻滞剂相似,但其赖氨酸19残基可能会增强其对该通道的亲和力。因此,我们对Meuk7-3进行了重新设计,生成了三个类似物Meuk7-3 A、Meuk7-3B和Meuk7-3C,以改善其类药性质和对Kv1.3的亲和力。与Kv1.3的相互作用评估表明,Meuk7-3及其所有设计的类似物都可以通过肽的赖氨酸19与酪氨酸447、酪氨酸797、酪氨酸1147和酪氨酸1497的相互作用进入Kv1.3的孔道,这些关键残基位于Kv1.3的通道孔处。然而,设计的肽与Kv1.3相互作用的稳定性比Meuk7-3更高。结合亲和力分析表明,所有设计的肽对Kv1.3的结合亲和力都比Meuk7-3更好。在这三个类似物中,与天然的Meuk-3相比,发现Meuk7-3 A具有更好的类药性质和相互作用情况,包括结合能和对Kv1.3的亲和力。这些发现为通过计算工具设计治疗自身免疫性和炎症性疾病的高效Kv1.3抑制剂提供了新的数据,尽管需要进行实验测试来验证它们。