Marr Nico, Tirsoaga Alina, Blanot Didier, Fernandez Rachel, Caroff Martine
Department of Microbiology and Immunology, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z3.
J Bacteriol. 2008 Jun;190(12):4281-90. doi: 10.1128/JB.01875-07. Epub 2008 Apr 18.
Endotoxins are amphipathic lipopolysaccharides (LPSs), major constituents of the outer membrane of gram-negative bacteria. They consist of a lipid region, covalently linked to a core oligosaccharide, to which may be linked a repetitive glycosidic chain carrying antigenic determinants. Most of the biological activities of endotoxins have been associated with the lipid moiety of the molecule: unique to gram-negative bacteria, LPS is a ligand of the mammalian TLR4-MD2-CD14 pathogen recognition receptor complex. Lipid A preparations are often heterogeneous with respect to both the numbers and the lengths of fatty acids and the natures of substituents on the phosphate groups when present. The variants can significantly affect host immune responses. Nine species in the Bordetella genus have been described, and the fine LPS structures of seven of them have been published. In this report, lipids A from Bordetella pertussis Tohama I and B. bronchiseptica strain 4650 were further characterized and revealed to have a glucosamine substituting both lipid A phosphate groups of the diglucosamine backbone. These substitutions have not been previously described for bordetellae. Moreover, a B. pertussis transposon mutation that maps within a gene encoding a Bordetella ArnT (formerly PmrK) glycosyl transferase ortholog does not carry this substitution, thus providing a genetic basis for the modification. Reverse transcriptase PCR of this locus showed that it is Bvg regulated, suggesting that the ability of Bordetella to modify lipid A via this glucosamine modification is a potential virulence trait.
内毒素是两亲性脂多糖(LPSs),是革兰氏阴性菌外膜的主要成分。它们由一个脂质区域组成,该区域与一个核心寡糖共价连接,核心寡糖上可能连接着一条带有抗原决定簇的重复糖苷链。内毒素的大多数生物学活性都与分子的脂质部分有关:LPS是革兰氏阴性菌特有的,是哺乳动物TLR4-MD2-CD14病原体识别受体复合物的配体。脂质A制剂在脂肪酸的数量和长度以及存在时磷酸基团上取代基的性质方面往往是异质的。这些变体可显著影响宿主免疫反应。博德特氏菌属已描述了9个种,其中7个种的精细LPS结构已发表。在本报告中,对百日咳博德特氏菌Tohama I和支气管败血博德特氏菌菌株4650的脂质A进行了进一步表征,发现其在双葡萄糖胺主链的两个脂质A磷酸基团上都有一个葡萄糖胺取代。这些取代以前在博德特氏菌中未被描述过。此外,位于编码博德特氏菌ArnT(以前称为PmrK)糖基转移酶直系同源物的基因内的百日咳博德特氏菌转座子突变不携带这种取代,从而为这种修饰提供了遗传基础。该位点的逆转录酶PCR表明它受Bvg调控,这表明博德特氏菌通过这种葡萄糖胺修饰来修饰脂质A的能力是一种潜在的毒力特性。