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冷冻电镜结构揭示 ClC-2 氯离子通道及其特异性抑制剂 AK-42 的作用机制。

Cryo-EM structures of ClC-2 chloride channel reveal the blocking mechanism of its specific inhibitor AK-42.

机构信息

Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, 518055, Shenzhen, China.

Department of Biomedical Engineering, Southern University of Science and Technology, 518055, Shenzhen, China.

出版信息

Nat Commun. 2023 Jun 9;14(1):3424. doi: 10.1038/s41467-023-39218-6.

Abstract

ClC-2 transports chloride ions across plasma membranes and plays critical roles in cellular homeostasis. Its dysfunction is involved in diseases including leukodystrophy and primary aldosteronism. AK-42 was recently reported as a specific inhibitor of ClC-2. However, experimental structures are still missing to decipher its inhibition mechanism. Here, we present cryo-EM structures of apo ClC-2 and its complex with AK-42, both at 3.5 Å resolution. Residues S162, E205 and Y553 are involved in chloride binding and contribute to the ion selectivity. The side-chain of the gating glutamate E205 occupies the putative central chloride-binding site, indicating that our structure represents a closed state. Structural analysis, molecular dynamics and electrophysiological recordings identify key residues to interact with AK-42. Several AK-42 interacting residues are present in ClC-2 but not in other ClCs, providing a possible explanation for AK-42 specificity. Taken together, our results experimentally reveal the potential inhibition mechanism of ClC-2 inhibitor AK-42.

摘要

ClC-2 跨质膜转运氯离子,在细胞内稳态中发挥关键作用。其功能障碍与脑白质营养不良和原发性醛固酮增多症等疾病有关。AK-42 最近被报道为 ClC-2 的特异性抑制剂。然而,目前仍缺乏实验结构来解析其抑制机制。本研究报道了 apo ClC-2 及其与 AK-42 复合物的 cryo-EM 结构,分辨率均为 3.5Å。残基 S162、E205 和 Y553 参与氯离子结合,并有助于离子选择性。门控谷氨酸 E205 的侧链占据假定的中央氯离子结合位点,表明我们的结构代表了一个关闭状态。结构分析、分子动力学和电生理记录确定了与 AK-42 相互作用的关键残基。AK-42 相互作用的几个残基存在于 ClC-2 中,但不存在于其他 ClC 中,这为 AK-42 的特异性提供了可能的解释。总之,本研究结果通过实验揭示了 ClC-2 抑制剂 AK-42 的潜在抑制机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f425/10256776/698d87afa518/41467_2023_39218_Fig1_HTML.jpg

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