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Structure Of The Connexin 26 Gap Junction Channel At 3.5 A Resolution

机译:连接蛋白26间隙连接通道在3.5 A分辨率下的结构

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Gap junctions consist of arrays of intercellular channels between adjacent cells that permit the exchange of ions and small molecules. Here we report the crystal structure of the gap junction channel formed by human connexin 26 (Cx26, also known as GJB2) at 3.5 A resolution, and discuss structural determinants of solute transport through the channel. The density map showed the two membrane-spanning hemichannels and the arrangement of the four transmembrane helices of the six protomers forming each hemichannel. The hemichannels feature a positively charged cytoplasmic entrance, a funnel, a negatively charged transmembrane pathway, and an extracellular cavity. The pore is narrowed at the funnel, which is formed by the six amino-terminal helices lining the wall of the channel, which thus determines the molecular size restriction at the channel entrance. The structure of the Cx26 gap junction channel also has implications for the gating of the channel by the transjunctional voltage.
机译:间隙连接由相邻细胞之间的细胞间通道阵列组成,这些通道允许离子和小分子的交换。在这里我们报告了由人类连接蛋白26(Cx26,也称为GJB2)在3.5 A分辨率下形成的间隙连接通道的晶体结构,并讨论了溶质通过通道运输的结构决定因素。密度图显示了两个跨膜的半通道以及形成每个半通道的六个protomer的四个跨膜螺旋的排列。半通道具有带正电的细胞质入口,漏斗,带负电的跨膜途径和细胞外腔。孔在漏斗处变窄,该漏斗由衬在通道壁上的六个氨基末端螺旋形成,因此决定了通道入口处的分子大小限制。 Cx26间隙结沟道的结构也对跨结电压对沟道的门控有影响。

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