首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Three-dimensional structure of a human connexin26 gap junction channel reveals a plug in the vestibule
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Three-dimensional structure of a human connexin26 gap junction channel reveals a plug in the vestibule

机译:人connexin26间隙连接通道的三维结构揭示了前庭中的塞子

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Connexin molecules form intercellular membrane channels facilitating electronic coupling and the passage of small molecules between adjoining cells. Connexin26 (Cx26) is the second smallest member of the gap junction protein family, and mutations in Cx26 cause certain hereditary human diseases such as skin disorders and hearing loss. Here, we report the electron crystallographic structure of a human Cx26 mutant (M34A). Although crystallization trials used hemichannel preparations, the density map revealed that two hemichannels redocked at their extracellular surfaces into full intercellular channels. These orthorhombic crystals contained two sets of symmetry-related intercellular channels within three lipid bilayers. The 3D map shows a prominent density in the pore of each hemichannel. This density contacts the innermost helices of the surrounding connexin subunits at the bottom of the vestibule. The density map suggests that physical blocking may play an important role that underlies gap junction channel regulation. Our structure allows us to suggest that the two docked hemichannels can be independent and may regulate their activity autonomously with a plug in the vestibule.
机译:连接蛋白分子形成细胞间膜通道,促进电子偶联和小分子在相邻细胞之间通过。连接蛋白26(Cx26)是间隙连接蛋白家族中第二小的成员,Cx26中的突变会引起某些遗传性人类疾病,例如皮肤疾病和听力下降。在这里,我们报告人类Cx26突变体(M34A)的电子晶体结构。尽管结晶试验使用半通道制剂,但密度图显示,两个半通道在其细胞外表面重排为完整的细胞间通道。这些正交晶体在三个脂质双层中包含两组对称相关的细胞间通道。 3D图显示了每个半通道的孔中的显着密度。此密度接触前庭底部周围连接蛋白亚基的最里面的螺旋。密度图表明,物理阻塞可能在间隙连接通道调节中起重要作用。我们的结构允许我们建议两个对接的半通道可以是独立的,并可以通过前庭中的塞子自主调节其活动。

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