Boulnois G J, Jann K
Department of Microbiology, University of Leicester, UK.
Mol Microbiol. 1989 Dec;3(12):1819-23. doi: 10.1111/j.1365-2958.1989.tb00168.x.
Elaboration of a capsule composed of one of a range of acidic polysaccharides is a common feature of many bacteria, particularly those capable of causing serious infections in humans. Biochemical and genetical analyses of capsule biogenesis in Escherichia coli are beginning to reveal new aspects of polysaccharide biosynthesis. Genes have been identified which are thought to encode products responsible for the translocation of these high molecular-weight polysaccharides across the cytoplasmic and outer membranes, and the organization of exported polysaccharide into a capsule. Their further analysis should provide new insights into membrane biology, particularly since the genes in question are absent from the often used laboratory strains of E. coli. Genetic analysis of capsule diversity is beginning to suggest possible mechanisms for the generation of the structural diversity of polysaccharides.
由一系列酸性多糖之一构成的荚膜的形成是许多细菌的共同特征,尤其是那些能够在人类中引起严重感染的细菌。对大肠杆菌中荚膜生物合成的生化和遗传分析开始揭示多糖生物合成的新方面。已鉴定出一些基因,这些基因被认为编码负责这些高分子量多糖跨细胞质膜和外膜转运以及将输出的多糖组织成荚膜的产物。对它们的进一步分析应该能为膜生物学提供新的见解,特别是因为常用的大肠杆菌实验室菌株中不存在上述基因。对荚膜多样性的遗传分析开始揭示多糖结构多样性产生的可能机制。