Institute for Protein Research, Osaka University, OLABB, 6-2-3 Furuedai, Suita 565-0874, Japan.
Curr Opin Struct Biol. 2010 Aug;20(4):423-30. doi: 10.1016/j.sbi.2010.05.003. Epub 2010 Jun 9.
X-ray analysis of the human connexin26 gap junction channel has provided structural details of its open state. The gap junction channel is formed by paired hemichannels on two adjacent cells; each hemichannel consists of six protomers, and exhibits a six-fold symmetry. The protomer folds in a typical four-helix bundle. The amino-terminal region folds in a short helix and is inserted into the lumen to form a funnel structure. The structure of the amino-terminal region could explain the channel's gating mechanism. Extensive interactions between two hemichannels allow the gap junction channel to tightly connect two adjacent cells. The gap junction, which consists of hundreds of gap junction channels, could both serve as an intracellular channel and contribute to cellular adhesion.
对人连接蛋白 26 间隙连接通道的 X 射线分析提供了其开放状态的结构细节。间隙连接通道由两个相邻细胞上的成对的半通道形成;每个半通道由六个原聚体组成,并表现出六重对称。原聚体折叠成典型的四螺旋束。氨基末端区域折叠成一个短螺旋,并插入腔中形成一个漏斗结构。氨基末端区域的结构可以解释通道的门控机制。两个半通道之间的广泛相互作用允许间隙连接通道紧密连接两个相邻的细胞。由数百个间隙连接通道组成的间隙连接既可以作为细胞内通道,也可以促进细胞黏附。