Yeager M, Unger V M, Falk M M
Department of Cell Biology, Scripps Research Institute, La Jolla, CA 92037, USA.
Curr Opin Struct Biol. 1998 Aug;8(4):517-24. doi: 10.1016/s0959-440x(98)80131-0.
Gap junction membrane channels assemble as dodecameric complexes, in which a hexameric hemichannel (connexon) in one plasma membrane docks end to end with a connexon in the membrane of a closely apposed cell. Steps in the synthesis, assembly and turnover of gap junction channels appear to follow the general secretory pathway for membrane proteins. In addition to homo-oligomeric connexons, different connexin polypeptide subunits can also assemble as hetero-oligomers. The ability to form homotypic and heterotypic channels that consist of two identical or two different connexons, respectively, adds even greater versatility to the functional modulation of gap junction channels. Electron cryocrystallography of recombinant gap junction channels has recently provided direct evidence for alpha-helical folding of at least two of the transmembrane domains within each connexin subunit. The potential to correlate the structure and biochemistry of gap junction channels with recently identified human diseases involving connexin mutations makes this a particularly exciting area of research.
间隙连接膜通道组装成十二聚体复合物,其中一个质膜中的六聚体半通道(连接子)与紧密相邻细胞的膜中的连接子端对端对接。间隙连接通道的合成、组装和周转步骤似乎遵循膜蛋白的一般分泌途径。除了同型寡聚连接子外,不同的连接蛋白多肽亚基也可以组装成异型寡聚体。分别由两个相同或两个不同连接子组成的同型和异型通道的形成能力,为间隙连接通道的功能调节增添了更大的多样性。重组间隙连接通道的电子冷冻晶体学最近为每个连接蛋白亚基内至少两个跨膜结构域的α螺旋折叠提供了直接证据。将间隙连接通道的结构和生物化学与最近发现的涉及连接蛋白突变的人类疾病相关联的潜力,使这成为一个特别令人兴奋的研究领域。