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甲氟喹和2-氨基乙氧基二苯硼酸对连接蛋白通道的抑制机制。

Mechanism of connexin channel inhibition by mefloquine and 2-aminoethoxydiphenyl borate.

作者信息

Lavriha Pia, Han Yufei, Ding Xinyue, Schuster Dina, Qi Chao, Vaithia Anand, Picotti Paola, Korkhov Volodymyr M

机构信息

Laboratory of Biomolecular Research, Paul Scherrer Institute, Villigen, Switzerland.

Institute of Molecular Biology and Biophysics, ETH Zurich, Zürich, Switzerland.

出版信息

PLoS One. 2024 Dec 31;19(12):e0315510. doi: 10.1371/journal.pone.0315510. eCollection 2024.

Abstract

Gap junction intercellular communication (GJIC) between two adjacent cells involves direct exchange of cytosolic ions and small molecules via connexin gap junction channels (GJCs). Connexin GJCs have emerged as drug targets, with small molecule connexin inhibitors considered a viable therapeutic strategy in several diseases. The molecular mechanisms of GJC inhibition by known small molecule connexin inhibitors remain unknown, preventing the development of more potent and connexin-specific therapeutics. Here we show that two GJC inhibitors, mefloquine (MFQ) and 2-aminoethoxydiphenyl borate (2APB) bind to Cx32 and block dye permeation across Cx32 hemichannels (HCs) and GJCs. Cryo-EM analysis shows that 2APB binds to "site A", close to the N-terminal gating helix of Cx32 GJC, restricting the entrance to the channel pore. In contrast, MFQ binds to a distinct "site M", deeply buried within the pore. MFQ binding to this site modifies the electrostatic properties of Cx32 pore. Mutagenesis of V37, a key residue located in the site M, renders Cx32 HCs and GJCs insensitive to MFQ-mediated inhibition. Moreover, our cryo-EM analysis, mutagenesis and activity assays show that MFQ targets the M site in Cx43 GJC similarly to Cx32. Taken together, our results point to a conserved inhibitor binding site in connexin channels, opening a new route for development of specific drugs targeting connexins.

摘要

两个相邻细胞之间的间隙连接细胞间通讯(GJIC)涉及通过连接蛋白间隙连接通道(GJC)直接交换胞质离子和小分子。连接蛋白GJC已成为药物靶点,小分子连接蛋白抑制剂被认为是几种疾病中可行的治疗策略。已知小分子连接蛋白抑制剂抑制GJC的分子机制尚不清楚,这阻碍了更有效和更具连接蛋白特异性疗法的开发。在这里,我们表明两种GJC抑制剂,甲氟喹(MFQ)和2-氨基乙氧基二苯硼酸(2APB)与Cx32结合,并阻断染料通过Cx32半通道(HC)和GJC的渗透。冷冻电镜分析表明,2APB与靠近Cx32 GJC N端门控螺旋的“A位点”结合,限制了通道孔的入口。相比之下,MFQ与一个位于孔内深处的不同“M位点”结合。MFQ与该位点的结合改变了Cx32孔的静电性质。位于M位点的关键残基V37的诱变使Cx32 HC和GJC对MFQ介导的抑制不敏感。此外,我们的冷冻电镜分析、诱变和活性测定表明,MFQ与Cx43 GJC中的M位点结合的方式与Cx32类似。综上所述,我们的结果指出了连接蛋白通道中一个保守的抑制剂结合位点,为开发靶向连接蛋白的特异性药物开辟了一条新途径。

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