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Expression of the Escherichia coli K5 capsular antigen: immunoelectron microscopic and biochemical studies with recombinant E. coli.

机译:大肠杆菌K5荚膜抗原的表达:重组大肠杆菌的免疫电子显微镜和生化研究。

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摘要

The capsular K5 polysaccharide, a representative of group II capsular antigens of Escherichia coli, has been cloned previously, and three gene regions responsible for polymerization and surface expression have been defined (I. S. Roberts, R. Mountford, R. Hodge, K. B. Jann, and G. J. Boulnois, J. Bacteriol. 170:1305-1310, 1988). In this report, we describe the immunoelectron microscopic analysis of recombinant bacteria expressing the K5 antigen and of mutants defective in either region 1 or region 3 gene functions, as well as the biochemical analysis of the K5 capsular polysaccharide. Whereas the K5 clone expressed the K5 polysaccharide as a well-developed capsule in about 25% of its population, no capsule was observed in whole mount preparations and ultrathin sections of the expression mutants. Immunogold labeling of sections from the region 3 mutant revealed the capsular K5 polysaccharide in the cytoplasm. With the region 1 mutant, the capsular polysaccharide appeared associated with the cell membrane, and, unlike the region 3 mutant polysaccharide, the capsular polysaccharide could be detected in the periplasm after plasmolysis of the bacteria. Polysaccharides were isolated from the homogenized mutants with cetyltrimethylammonium bromide. The polysaccharide from the region 1 mutant had the same size as that isolated from the capsule of the original K5 clone, and both polysaccharides were substituted with phosphatidic acid. The polysaccharide from the region 3 mutant was smaller and was not substituted with phosphatidic acid. These results prompt us to postulate that gene region 3 products are involved in the translocation of the capsular polysaccharide across the cytoplasmic membrane and that region 1 directs the transport of the lipid-substituted capsular polysaccharide through the periplasm and across the outer membrane.
机译:荚膜K5多糖是大肠杆菌II类荚膜抗原的代表,先前已被克隆,并且已经定义了负责聚合和表面表达的三个基因区域(IS Roberts,R.Mountford,R.Hodge,KB Jann和GJ Boulnois,J.Bacteriol.170:1305-1310,1988)。在此报告中,我们描述了表达K5抗原的重组细菌和区域1或区域3基因功能缺陷的突变体的免疫电子显微镜分析,以及K5荚膜多糖的生化分析。 K5克隆在约25%的人群中将K5多糖表达为成熟的胶囊,而在表达突变体的整装制剂和超薄切片中均未观察到胶囊。来自区域3突变体的切片的免疫金标记显示了细胞质中的荚膜K5多糖。对于区域1突变体,荚膜多糖似乎与细胞膜相关,并且与区域3突变体多糖不同,可以在细菌溶质后在周质中检测到荚膜多糖。用十六烷基三甲基溴化铵从均质的突变体中分离多糖。来自区域1突变体的多糖具有与从原始K5克隆的胶囊分离出的多糖相同的大小,并且两个多糖均被磷脂酸取代。来自区域3突变体的多糖较小,并且未被磷脂酸取代。这些结果促使我们推测基因区域3产物参与荚膜多糖跨细胞质膜的转运,而区域1指导脂质取代的荚膜多糖通过周质和跨外膜的运输。

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