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蜈蚣毒素SsTx-4对内向整流钾通道的孔道阻断机制

Pore blocking mechanisms of centipede toxin SsTx-4 on the inwardly rectifying potassium channels.

作者信息

Tang Dongfang, Xu Jiahui, Bao Wenhu, Xu Fanping, Qi Jieqiong, Tan Zheni, Li Chuanli, Luo Xiaofang, You Xia, Rong Mingqiang, Liu Zhonghua, Tang Cheng

机构信息

Hunan Engineering Technology Research Center for Comprehensive Development and Utilization of Biomass Resources, College of Chemistry and Bioengineering, Hunan University of Science and Engineering, Yongzhou, China; The National and Local Joint Engineering Laboratory of Animal Peptide Drug Development, College of life Sciences, Hunan Normal University, Changsha, China.

Center for Genetics and Developmental Systems Biology, Department of Obstetrics & Gynecology, Nanfang Hospital, Southern Medical University, Guangzhou, China.

出版信息

Eur J Pharmacol. 2025 Feb 5;988:177213. doi: 10.1016/j.ejphar.2024.177213. Epub 2024 Dec 18.

Abstract

The peptide toxin SsTx-4 derived from venom of centipede Scolopendra subspinipes mutilans was characterized as a potent antagonist of the inwardly rectifying potassium (Kir) channel subtypes Kir1.1, Kir4.1, and Kir6.2 in our previous study. Alanine-scanning mutagenesis analysis identified key molecular determinants on the SsTx-4 toxin interacting with these Kir channels, as well as those on the Kir6.2 channel interacting with the toxin. However, the key residues on Kir1.1 and Kir4.1 channels responsible for binding SsTx-4 remain unclear. Here, using a combination of site-directed mutagenesis, patch-clamp analysis, molecular docking with AlphaFold 3, and molecular dynamic simulations, we revealed that SsTx-4 acted on the Kir channels as a pore blocker, with K13 on toxin serving as the functional pore-blocking residue and other residues on it contributing to stabilize the toxin-channel complex by binding to multiple residues on the wall of the channels' outer vestibule, involving E104 on Kir1.1; D100, L115, and F133 on Kir4.1; and E108, S113, H115, and M137 on Kir6.2. Collectively, these findings advanced our understanding on the interaction between Kir channels and this prototype Kir antagonist, providing insights that could inspire the development of more potent and specific Kir subtype blockers in the future.

摘要

在我们之前的研究中,源自少棘蜈蚣毒液的肽毒素SsTx-4被鉴定为内向整流钾(Kir)通道亚型Kir1.1、Kir4.1和Kir6.2的强效拮抗剂。丙氨酸扫描诱变分析确定了SsTx-4毒素与这些Kir通道相互作用的关键分子决定因素,以及Kir6.2通道与该毒素相互作用的关键分子决定因素。然而,Kir1.1和Kir4.1通道上负责结合SsTx-4的关键残基仍不清楚。在此,通过结合定点诱变、膜片钳分析、与AlphaFold 3的分子对接以及分子动力学模拟,我们揭示了SsTx-4作为一种孔道阻断剂作用于Kir通道,毒素上的K13作为功能性孔道阻断残基,其上的其他残基通过与通道外前庭壁上的多个残基结合来稳定毒素-通道复合物,涉及Kir1.1上的E104;Kir4.1上的D100、L115和F133;以及Kir6.2上的E108、S113、H115和M137。总的来说,这些发现加深了我们对Kir通道与这种原型Kir拮抗剂之间相互作用的理解,为未来开发更有效、更具特异性的Kir亚型阻断剂提供了思路。

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