Bulach D M, Kalambaheti T, de la Peña-Moctezuma A, Adler B
Department of Microbiology, Monash University Vic, Australia.
J Mol Microbiol Biotechnol. 2000 Oct;2(4):375-80.
Lipopolysaccharide is the major surface antigen of Leptospira. Variation in LPS structure is the basis for the more than 200 serovars that have been identified. Despite the importance of this antigen in immunity and diagnostics, there is relatively little known about the genetics and chemistry of leptospiral LPS, as compared to some members of the Enterobacteriaceae. The nucleotide sequence of the locus encoding enzymes for the biosynthesis of the O-antigen component of leptospiral LPS (rfb locus) has been determined for three serovars namely, L. interrogans serovar Pomona, L. interrogans serovar Hardjo subtype Hardjoprajitno and L. borgpetersenii serovar Hardjo subtype Hardjobovis. In the absence of data relating to the chemical structure or genetic tools to construct isogenic mutants in Leptospira, similarity analysis has been used to provide insight into the mechanisms by which the leptospiral O-antigen is assembled by comparison with characterized systems from other bacteria. In addition, comparison of the gene layout in each of the serovars provides an indication of the genetic basis for serovar diversity.
脂多糖是钩端螺旋体的主要表面抗原。脂多糖结构的变异是已鉴定出的200多个血清型的基础。尽管这种抗原在免疫和诊断中很重要,但与肠杆菌科的一些成员相比,关于钩端螺旋体脂多糖的遗传学和化学性质的了解相对较少。已确定了三种血清型(问号钩端螺旋体波摩那群、问号钩端螺旋体哈焦群哈焦普拉吉诺亚型和博氏钩端螺旋体哈焦群哈焦波维斯亚型)编码钩端螺旋体脂多糖O抗原成分生物合成酶的基因座(rfb基因座)的核苷酸序列。由于缺乏与化学结构相关的数据或在钩端螺旋体中构建同基因突变体的遗传工具,已通过相似性分析,与其他细菌的特征系统进行比较,来深入了解钩端螺旋体O抗原的组装机制。此外,对每个血清型中基因布局的比较为血清型多样性提供了遗传基础的指示。