Modification of Lipid A Biosynthesis in Neisseria meningitidis lpxL Mutants: Influence on Lipopolysaccharide Structure, Toxicity, and Adjuvant Activity
Open Access
- 1 October 2001
- journal article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 69 (10) , 5981-5990
- https://doi.org/10.1128/iai.69.10.5981-5990.2001
Abstract
Two genes homologous to lpxL andlpxM from Escherichia coli and other gram-negative bacteria, which are involved in lipid A acyloxyacylation, were identified in Neisseria meningitidis strain H44/76 and insertionally inactivated. Analysis by tandem mass spectrometry showed that one of the resulting mutants, termed lpxL1, makes lipopolysaccharide (LPS) with penta- instead of hexa-acylated lipid A, in which the secondary lauroyl chain is specifically missing from the nonreducing end of the GlcN disaccharide. Insertional inactivation of the other (lpxL2) gene was not possible in wild-type strain H44/76 expressing full-length immunotype L3 lipopolysaccharide (LPS) but could be readily achieved in agalE mutant expressing a truncated oligosaccharide chain. Structural analysis of lpxL2 mutant lipid A showed a major tetra-acylated species lacking both secondary lauroyl chains and a minor penta-acylated species. The lpxL1mutant LPS has retained adjuvant activity similar to wild-type meningococcal LPS when used for immunization of mice in combination with LPS-deficient outer membrane complexes from N. meningitidis but has reduced toxicity as measured in a tumor necrosis factor alpha induction assay with whole bacteria. In contrast, both adjuvant activity and toxicity of the lpxL2 mutant LPS are strongly reduced. As the combination of reduced toxicity and retained adjuvant activity has not been reported before for eitherlpxL or lpxM mutants from other bacterial species, our results demonstrate that modification of meningococcal lipid A biosynthesis can lead to novel LPS species more suitable for inclusion in human vaccines.Keywords
This publication has 48 references indexed in Scilit:
- Effect of Cold Shock on Lipid A Biosynthesis inEscherichia coliJournal of Biological Chemistry, 1999
- htrB of Haemophilus influenzae: determination of biochemical activity and effects on virulence and lipooligosaccharide toxicityInnate Immunity, 1997
- Bacterial polysaccharide synthesis and gene nomenclatureTrends in Microbiology, 1996
- Function of the htrB High Temperature Requirement Gene of Escherichia coli in the Acylation of Lipid AJournal of Biological Chemistry, 1996
- Identification of a locus involved in meningococcal lipopolysaccharide biosynthesis by deletion mutagenesisMolecular Microbiology, 1996
- A novel Escherichia coli lipid A mutant that produces an antiinflammatory lipopolysaccharide.Journal of Clinical Investigation, 1996
- Analytical Properties of the Nanoelectrospray Ion SourceAnalytical Chemistry, 1996
- Cloning and molecular analysis of the galE gene of Neisseria meningitidls and its role in lipopolysaccharide biosynthesisMolecular Microbiology, 1993
- Electrospray mass spectrometry for characterization of lipid a fromEnterobacter agglomeransJournal of Mass Spectrometry, 1993
- Increased resolution of lipopolysaccharides and lipooligosaccharides utilizing tricine-sodium dodecyl sulfate-polyacrylamide gel electrophoresisJournal of Immunological Methods, 1990