Haller I, Henning U
Proc Natl Acad Sci U S A. 1974 May;71(5):2018-21. doi: 10.1073/pnas.71.5.2018.
E. coli cells treated with the bifunctional crosslinking reagents dimethyl malonimidate, succinimidate, adipimidate, suberimidate, and sebacinimidate served for the isolation of rod-shaped "ghosts." These ghosts proved to be crosslinked over their entire surface; i.e., a macromolecule (resistant to boiling 1% Na dodecyl sulfate) the size of the cell had been created. Also, ghosts could similarly be crosslinked. In both cases, the final "sacs" contained about 60-70% protein, and very little or no lipopolysaccharide. When ghosts from which phospholipid had been removed were crosslinked, the covalently closed ghosts were almost pure protein; 80-90% of their dry mass was accounted for by protein. Ammonolysis of the crosslinked material (whether stemming from crosslinked cells or ghosts) showed that the same four proteins (Na dodecyl sulfate gel bands) had been crosslinked that are found in normally prepared ghosts. These observations practically exclude the hypothesis that a fluid mosaic model of membrane structure can be applied to the outer membrane of the E. coli cell envelope; rather, extensive protein-protein interactions must exist over the whole surface of this membrane. These findings are consistent with the possibility that the ghost polypeptide chains are involved in the determination of cellular shape.
用双功能交联剂丙二酰亚胺二甲酯、琥珀酰亚胺酯、己二酰亚胺酯、辛二酰亚胺酯和癸二酰亚胺酯处理的大肠杆菌细胞用于分离杆状“空壳”。这些空壳被证明在其整个表面交联;也就是说,已经形成了一个细胞大小的大分子(耐煮沸的1%十二烷基硫酸钠)。此外,空壳也可以类似地交联。在这两种情况下,最终的“囊”含有约60 - 70%的蛋白质,脂多糖很少或没有。当去除磷脂的空壳被交联时,共价封闭的空壳几乎是纯蛋白质;其干重的80 - 90%由蛋白质组成。对交联材料(无论是来自交联细胞还是空壳)进行氨解表明,交联的是在正常制备的空壳中发现的相同四种蛋白质(十二烷基硫酸钠凝胶条带)。这些观察结果实际上排除了膜结构的流体镶嵌模型可应用于大肠杆菌细胞壁外膜的假设;相反,在该膜的整个表面必须存在广泛的蛋白质 - 蛋白质相互作用。这些发现与空壳多肽链参与细胞形状决定的可能性一致。