Inouye M
Proc Natl Acad Sci U S A. 1974 Jun;71(6):2396-2400. doi: 10.1073/pnas.71.6.2396.
From the complete amino-acid sequence of a lipoprotein from the outer membrane of E. coli, a three-dimensional molecular assembly model was constructed. It is proposed that the model provides a tubular hydrophilic channel through the outer membrane, which serves as a passive diffusion pore. An alpha-helix is constructed from the sequence, and six of them are arranged to form a superhelix with a hydrophilic interior and hydrophobic outer surface. The superhelical assembly is stabilized by seven ionic interactions between adjacent alpha-helices. Since the height of the assembly is 76 A, it could be inserted into the outer membrane and span the full 75-A thick membrane. The assembly is stabilized in the outer membrane not only by hydrophobic interaction between the surface of the assembly and the lipid bilayer, but also by three hydrocarbon chains of fatty acids linked to the amino-terminal end of the lipoprotein, which are flipped back along the assembly and inserted into the lipid bilayer of the outer membrane. Any two alpha-helices in an assembly are linked to the peptidoglycan at their carboxyl-terminal ends so that the outer membrane is anchored on the peptidoglycan layer. Six or more alpha-helices can form an assembly of this type. However, assuming that an assembly consists of six helices, there are 1.25 x 10(5) per cell hydrophilic channels of a diameter of 12.5 A and 35% of the cell surface is occupied by the assemblies.
根据大肠杆菌外膜脂蛋白的完整氨基酸序列构建了三维分子组装模型。该模型被认为提供了一个穿过外膜的管状亲水通道,作为一个被动扩散孔。从序列构建了一个α螺旋,六个这样的α螺旋排列形成一个内部亲水、外表面疏水的超螺旋。相邻α螺旋之间的七个离子相互作用使超螺旋组装得以稳定。由于组装体的高度为76埃,它可以插入外膜并跨越整个75埃厚的膜。组装体在外膜中稳定不仅是通过组装体表面与脂质双层之间的疏水相互作用,还通过与脂蛋白氨基末端相连的三条脂肪酸烃链,这些烃链沿组装体向后翻转并插入外膜的脂质双层。组装体中的任意两个α螺旋在其羧基末端与肽聚糖相连,从而使外膜锚定在肽聚糖层上。六个或更多的α螺旋可以形成这种类型的组装体。然而,假设一个组装体由六个螺旋组成,每个细胞有1.25×10⁵个直径为12.5埃的亲水通道,且细胞表面的35%被这些组装体占据。