Université de Tunis El Manar, Institut Pasteur de Tunis, LR11IPT08 Venins et biomolécules thérapeutiques, 1002 Tunis, Tunisia; Université de Carthage, Institut National des Sciences Appliquées et de Technologie, Tunis 1080, Tunisia.
Université de Tunis El Manar, Institut Pasteur de Tunis, LR11IPT08 Venins et biomolécules thérapeutiques, 1002 Tunis, Tunisia.
Int J Biol Macromol. 2018 May;111:1146-1155. doi: 10.1016/j.ijbiomac.2018.01.144. Epub 2018 Feb 19.
Voltage-gated potassium (Kv) channels are known to play a pivotal role in the progression of various cancer types and considered as new targets for designing anti-cancer therapy. However, the fact that many Kv channels are expressed in different cell lines makes it difficult to ascribe a functional role for a given Kv channel on a specific aspect of the tumorogenesis. In this work, we showed that although both Kv1.1 and Kv1.3 channels are expressed in U87 (glioblastoma), MDA-MB-231 (breast cancer) and LS174 (colon adenocarcinoma) cells, these respond differently to KAaH1 or KAaH2, two homologous Kv1 blockers from scorpion venom. KAaH1 is active on Kv1.1 and Kv1.3 and was found to inhibit migration and adhesion of U87 cells whereas KAaH2 which is slightly active only on Kv1.1 channel, inhibits their proliferation via the EGFR signaling pathway. The correlation between the electro-physiological activity of the scorpion peptides and their anti-migratory effects suggests the involvement of the Kv1.1 and Kv1.3 channels in the mobility of the three cancer cell lines. Our results showed that besides they can elucidate the implication of Kv1.1 and Kv1.3 channels in molecular mechanisms of neoplastic progression, KAaH1 and KAaH2 may be used as therapeutic tools against glioblastoma.
电压门控钾 (Kv) 通道已知在各种癌症类型的进展中发挥关键作用,并被认为是设计抗癌治疗的新靶点。然而,许多 Kv 通道在不同的细胞系中表达,这使得难以将特定 Kv 通道的功能作用归因于肿瘤发生的特定方面。在这项工作中,我们表明,尽管 Kv1.1 和 Kv1.3 通道都在 U87(神经胶质瘤)、MDA-MB-231(乳腺癌)和 LS174(结肠腺癌)细胞中表达,但它们对 KAaH1 或 KAaH2 的反应不同,Kv1 阻滞剂是从蝎子毒液中分离出来的两种同源 Kv1 阻滞剂。 KAaH1 对 Kv1.1 和 Kv1.3 均有活性,被发现抑制 U87 细胞的迁移和粘附,而仅对 Kv1.1 通道稍有活性的 KAaH2 通过 EGFR 信号通路抑制其增殖。蝎肽的电生理活性与抗迁移作用之间的相关性表明 Kv1.1 和 Kv1.3 通道参与了三种癌细胞系的迁移。我们的研究结果表明,除了可以阐明 Kv1.1 和 Kv1.3 通道在肿瘤进展的分子机制中的作用外,Kv1.1 和 Kv1.3 通道可能被用作治疗神经胶质瘤的治疗工具。