Weiss R L
J Cell Biol. 1977 May;73(2):505-19. doi: 10.1083/jcb.73.2.505.
The ultrastructure and polypeptide composition of a novel membrane junction in magnesium-starved Escherichia coli are described in this report. Freeze-fracture replicas reveal the junction as a site-specific membrane particle array with four fracture faces. Each junction consists of a cell membrane, a midline zone and a coupled membrane. Membrane particles associated with the junction extend from the hydrophobic region of the cell membrane across the hydrophilic midline zone and into the hydrophobic region of the coupled membrane. After negative staining or after rotary shadowing of freeze-fractured specimens, these particles were seen to consist of two similar but slightly offset bracket-shaped subunits separated by a small space. Optical analysis confirms this structure. Since the apposing membranes are bracketed or linked by their component particles, the name "bracket junction" is proposed for the complex. Methods are described for isolating a membrane fraction enriched in these junctional complexes; the fraction contains a prominent glycoprotein (mol wt 90,000) as well as a number of other components. The bracket junction is compared with the vertebrate gap junction in terms of both structure and possible roles in facilitating the permeation of the cell by small molecules.
本报告描述了缺镁大肠杆菌中一种新型膜连接的超微结构和多肽组成。冷冻蚀刻复制品显示该连接为具有四个断裂面的位点特异性膜颗粒阵列。每个连接由细胞膜、中线区和耦合膜组成。与连接相关的膜颗粒从细胞膜的疏水区域延伸穿过亲水性中线区并进入耦合膜的疏水区域。在对冷冻蚀刻标本进行负染色或旋转阴影处理后,这些颗粒被观察到由两个相似但略有偏移的括号形亚基组成,中间有一个小间隙。光学分析证实了这种结构。由于相对的膜通过其组成颗粒被括号括住或连接在一起,因此为该复合物提出了“括号连接”这一名称。文中描述了分离富含这些连接复合物的膜组分的方法;该组分包含一种突出的糖蛋白(分子量90,000)以及许多其他成分。从结构和促进小分子透过细胞的可能作用方面,将括号连接与脊椎动物的间隙连接进行了比较。