Institute of Molecular Biology and Biophysics, ETH Zurich, Zurich, Switzerland.
Laboratory of Biomolecular Research, Paul Scherrer Institute, Villigen, Switzerland.
Elife. 2023 Aug 3;12:RP87616. doi: 10.7554/eLife.87616.
Gap junction channels (GJCs) mediate intercellular communication by connecting two neighbouring cells and enabling direct exchange of ions and small molecules. Cell coupling via connexin-43 (Cx43) GJCs is important in a wide range of cellular processes in health and disease (Churko and Laird, 2013; Liang et al., 2020; Poelzing and Rosenbaum, 2004), yet the structural basis of Cx43 function and regulation has not been determined until now. Here, we describe the structure of a human Cx43 GJC solved by cryo-EM and single particle analysis at 2.26 Å resolution. The pore region of Cx43 GJC features several lipid-like densities per Cx43 monomer, located close to a putative lateral access site at the monomer boundary. We found a previously undescribed conformation on the cytosolic side of the pore, formed by the N-terminal domain and the transmembrane helix 2 of Cx43 and stabilized by a small molecule. Structures of the Cx43 GJC and hemichannels (HCs) in nanodiscs reveal a similar gate arrangement. The features of the Cx43 GJC and HC cryo-EM maps and the channel properties revealed by molecular dynamics simulations suggest that the captured states of Cx43 are consistent with a closed state.
缝隙连接通道(GJCs)通过连接两个相邻的细胞,实现离子和小分子的直接交换,从而介导细胞间通讯。通过连接蛋白-43(Cx43)GJCs 的细胞偶联在健康和疾病的广泛细胞过程中非常重要(Churko 和 Laird,2013;Liang 等人,2020;Poelzing 和 Rosenbaum,2004),但直到现在,Cx43 的功能和调节的结构基础仍未确定。在这里,我们通过 cryo-EM 和单颗粒分析以 2.26 Å 的分辨率描述了人 Cx43 GJC 的结构。Cx43 GJC 的孔区域每个 Cx43 单体具有几个类脂密度,位于单体边界处的假定侧向进入位点附近。我们在孔的胞质侧发现了以前未描述的构象,由 Cx43 的 N 端结构域和跨膜螺旋 2 形成,并由小分子稳定。在纳米盘中的 Cx43 GJC 和半通道(HCs)的结构揭示了类似的门排列。Cx43 GJC 和 HC cryo-EM 图谱的特征以及分子动力学模拟揭示的通道特性表明,捕获的 Cx43 状态与关闭状态一致。