Drummelsmith J, Whitfield C
Department of Microbiology, University of Guelph, Ontario, Canada.
Mol Microbiol. 1999 Mar;31(5):1321-32. doi: 10.1046/j.1365-2958.1999.01277.x.
The group 1 K30 antigen from Escherichia coli (O9a:K30) is present on the cell surface as both a capsular structure composed of high-molecular-weight K30 polysaccharide and as short K30 oligosaccharides linked to lipid A-core in a lipopolysaccharide molecule (K30LPS). To determine the molecular processes that are responsible for the two forms of K antigen, the 16 kb chromosomal cps region has been characterized. This region encodes 12 gene products required for the synthesis, polymerization and translocation of the K30 antigen. The gene products include four glycosyltransferases responsible for synthesis of the K30 repeat unit; a PST (1) exporter (Wzx), required to transfer lipid-linked K30 units across the plasma membrane to the periplasmic space; and a K30-antigen polymerase (Wzy). These gene products are typical of those seen in O-antigen biosynthesis gene clusters and they interact with the lipopolysaccharide translocation pathway to express K30LPS on the cell surface. The same gene products also provide the biosynthetic intermediates for the capsule assembly pathway, although they are not in themselves sufficient for synthesis of the K30 capsule. Three additional genes, wza, wzb and wzc, encode homologues to proteins that are encoded by gene clusters involved in expression of a variety of bacterial exopolysaccharides. Mutant analysis indicates that Wza and Wzc are required for wild-type surface expression of the capsular structure but are not essential for polymerization and play no role in the translocation of K30LPS. These surface expression components provide the key feature that distinguishes the assembly systems for O antigens and capsules.
来自大肠杆菌(O9a:K30)的1组K30抗原以两种形式存在于细胞表面:一种是由高分子量K30多糖组成的荚膜结构,另一种是在脂多糖分子(K30LPS)中与脂质A核心相连的短K30寡糖。为了确定导致K抗原两种形式的分子过程,对16 kb的染色体cps区域进行了表征。该区域编码K30抗原合成、聚合和转运所需的12种基因产物。这些基因产物包括负责合成K30重复单元的四种糖基转移酶;一种PST(1)转运蛋白(Wzx),它需要将脂质连接的K30单元穿过质膜转运到周质空间;以及一种K30抗原聚合酶(Wzy)。这些基因产物是O抗原生物合成基因簇中常见的典型产物,它们与脂多糖转运途径相互作用,在细胞表面表达K30LPS。尽管这些基因产物本身不足以合成K30荚膜,但它们也为荚膜组装途径提供生物合成中间体。另外三个基因wza、wzb和wzc编码与参与多种细菌胞外多糖表达的基因簇所编码蛋白质同源的蛋白。突变分析表明,Wza和Wzc是荚膜结构野生型表面表达所必需的,但对聚合不是必需的且在K30LPS的转运中不起作用。这些表面表达成分提供了区分O抗原和荚膜组装系统的关键特征。