Logan Susan M, Chen Wangxue, Aubry Annie, Gidney Margaret Anne J, Lacelle Suzanne, St Michael Frank, Kuolee Rhonda, Higgins Melanie, Neufeld Sayre, Cox Andrew D
Institute for Biological Sciences, National Research Council, Ottawa, Ont., Canada K1A 0R6.
Vet Microbiol. 2006 Aug 25;116(1-3):175-86. doi: 10.1016/j.vetmic.2006.04.024. Epub 2006 Apr 30.
Previous structural studies of the lipopolysaccharides from the veterinary pathogens Mannheimia haemolytica (Mh), Actinobacillus pleuropneumoniae (Ap) and Pasteurella multocida (Pm) had identified a conserved inner core oligosaccharide structure that was present in all strains investigated. In order to examine the potential of this inner core structure as a vaccine, a mutagenesis strategy was adopted to interrupt a D-glycero-D-manno-heptosyltransferase gene (losB) of Mh. This gene encodes the enzyme responsible for the addition of a D-glycero-D-manno-heptose residue, the first residue beyond the conserved inner core, and its inactivation exposed the conserved inner core structure as a terminal unit on the mutant LPS molecule. Subsequent analyses confirmed the targeted structure of the mutant LPS had been obtained, and complementation with losB in trans confirmed that the losB gene encodes an alpha-1,6-D-glycero-D-manno-heptosyltransferase. Monoclonal antibodies raised in mice to this LPS structure were found to recognise LPS and whole-cells of the truncated mutant and wild-type Mh. The antibodies were bactericidal against a wild-type Mh strain and were able to passively protect mice in a model of Mh disease. This illustrates that it is possible to raise functional antibodies against the conserved inner core LPS structure.
先前对兽医病原体溶血曼氏杆菌(Mh)、胸膜肺炎放线杆菌(Ap)和多杀性巴氏杆菌(Pm)的脂多糖进行的结构研究,已鉴定出一种保守的内核寡糖结构,该结构存在于所有被研究的菌株中。为了研究这种内核结构作为疫苗的潜力,采用了诱变策略来中断Mh的一个D-甘油-D-甘露庚糖基转移酶基因(losB)。该基因编码负责添加D-甘油-D-甘露庚糖残基的酶,这是保守内核之外的第一个残基,其失活使保守的内核结构作为突变型脂多糖(LPS)分子上的末端单元暴露出来。随后的分析证实已获得突变型LPS的靶向结构,并且通过反式互补losB证实losB基因编码一种α-1,6-D-甘油-D-甘露庚糖基转移酶。发现用这种LPS结构在小鼠中产生的单克隆抗体能够识别截短的突变型和野生型Mh的LPS和全细胞。这些抗体对野生型Mh菌株具有杀菌作用,并且能够在Mh疾病模型中被动保护小鼠。这表明有可能产生针对保守的内核LPS结构的功能性抗体。