Lightfoot J, Lam J S
Department of Microbiology, University of Guelph, Ontario, Canada.
J Bacteriol. 1991 Sep;173(18):5624-30. doi: 10.1128/jb.173.18.5624-5630.1991.
Most strains of Pseudomonas aeruginosa can express two chemically and immunologically distinct types of lipopolysaccharide (LPS), an antigenically conserved form called A band and the serotype-specific form called B band. To study the molecular controls regulating expression of the A-band LPS antigen, we have cloned the genes involved with A-band LPS expression. Strain AK1401, a phage-resistant mutant of PAO1 which was shown previously to produce only A-band LPS and not the O-antigen-containing B-band LPS, was mutagenized by using ethyl methanesulfonate to generate an A-band-deficient mutant called rd7513. A cosmid clone bank of P. aeruginosa PAO1 whole genomic DNA was constructed in Escherichia coli. The gene bank was mobilized en masse into strain rd7513, and detection of complementation of synthesis of A band was done by screening transconjugants in a colony immunoblot assay with the A-band-specific monoclonal antibody N1F10. One recombinant cosmid, pFV3, complemented synthesis of A-band polysaccharide in rd7513. Silver-stained polyacrylamide gel and Western immunoblot analyses of LPS extracted from the transconjugant rd7513(pFV3) showed that the A band produced had a higher molecular weight than the A band of AK1401. Analysis of the plasmid pFV3 showed that it contained a chromosomal insert of 27 kb. Two subclones of pFV3, namely, pFV35 and pFV36, containing chromosomal inserts of 5.3 and 4.2 kb, respectively, also complemented A-band expression in rd7513. The LPS banding profile of rd7513(pFV35) was similar to that of AK1401, while the LPS profile of rd7513(pFV36) more closely resembled that of rd7513(pFV3). pFV3 complemented A-band expression in five of the six P. aeruginosa O serotypes which lack A band as well as in rough strain AK44 but failed to complement A-band expression in core mutants AK1012 and AK1282, suggesting that pFV3 contains genes for A-band expression and that synthesis of a complete core region in isogenic mutant strains is required for A-band synthesis.
大多数铜绿假单胞菌菌株能够表达两种化学和免疫特性不同的脂多糖(LPS),一种抗原性保守的形式称为A带,另一种血清型特异性形式称为B带。为了研究调控A带LPS抗原表达的分子机制,我们克隆了与A带LPS表达相关的基因。菌株AK1401是PAO1的噬菌体抗性突变体,先前已证明它仅产生A带LPS,而不产生含O抗原的B带LPS,用甲磺酸乙酯对其进行诱变以产生一个称为rd7513的A带缺陷突变体。在大肠杆菌中构建了铜绿假单胞菌PAO1全基因组DNA的黏粒克隆文库。将该基因文库整体导入菌株rd7513,并通过用A带特异性单克隆抗体N1F10进行菌落免疫印迹分析筛选转接合子,检测A带合成的互补情况。一个重组黏粒pFV3在rd7513中互补了A带多糖的合成。对从转接合子rd7513(pFV3)中提取的LPS进行银染聚丙烯酰胺凝胶和Western免疫印迹分析表明,产生的A带分子量比AK1401的A带高。对质粒pFV3的分析表明,它包含一个27 kb的染色体插入片段。pFV3的两个亚克隆,即pFV35和pFV36,分别包含5.3 kb和4.2 kb的染色体插入片段,也在rd7513中互补了A带表达。rd7513(pFV35)的LPS条带图谱与AK1401的相似,而rd7513(pFV36)的LPS图谱更类似于rd7513(pFV3)的。pFV3在六种缺乏A带的铜绿假单胞菌O血清型中的五种以及粗糙菌株AK44中互补了A带表达,但在核心突变体AK1012和AK1282中未能互补A带表达,这表明pFV3包含A带表达的基因,并且在同基因突变体菌株中完整核心区域的合成是A带合成所必需的。