Heptose I Glycan Substitutions onNeisseria gonorrhoeaeLipooligosaccharide Influence C4b-Binding Protein Binding and Serum Resistance
Open Access
- 1 August 2007
- journal article
- research article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 75 (8) , 4071-4081
- https://doi.org/10.1128/iai.01109-06
Abstract
Lipooligosaccharide (LOS) heptose (Hep) glycan substitutions influence gonococcal serum resistance. Several gonococcal strains bind the classical complement pathway inhibitor, C4b-binding protein (C4BP), via their porin (Por) molecule to escape complement-dependent killing by normal human serum (NHS). We show that the proximal glucose (Glc) on HepI is required for C4BP binding to Por1B-bearing gonococcal strains MS11 and 1291 but not to FA19 (Por1A). The presence of only the proximal Glc on HepI (lgtEmutant) permitted maximal C4BP binding to MS11 but not to 1291. Replacing 1291 lgtE Por with MS11 Por increased C4BP binding to levels that paralleled MS11 lgtE, suggesting that replacement of the Por1B molecule dictated the effects of HepI glycans on C4BP binding. The remainder of the strain background did not affect C4BP binding; replacing the Por of strain F62 with MS11 Por (F62 PorMS11) and truncating HepI mirrored the findings in the MS11 background. C4BP binding correlated with resistance to killing by NHS in most instances. F62 PorMS11 and itslgtEmutant were sensitive to NHS despite binding C4BP, secondary to kinetically overwhelming classical pathway activation and possibly increased alternative pathway activation (measured by factor Bb binding) by the F62 background. FA19 lgtF (HepI unsubstituted) resisted killing by only 10% NHS, not 50% NHS, despite binding levels of C4BP similar to those of FA19 and FA19 lgtE (both resistant to 50% serum), suggesting a role for the proximal Glc in serum resistance independently of C4BP binding. This study provides mechanistic insights into how HepI LOS substitutions affect the serum resistance ofN. gonorrhoeae.Keywords
This publication has 48 references indexed in Scilit:
- Logarithmic phase Escherichia coli K1 efficiently avoids serum killing by promoting C4bp‐mediated C3b and C4b degradationImmunology, 2006
- Immortalization of Human Urethral Epithelial Cells: a Model for the Study of the Pathogenesis of and the Inflammatory Cytokine Response to Neisseria gonorrhoeae InfectionInfection and Immunity, 2002
- Phase variable changes in genes lgtA and lgtC within the lgtABCDE operon of Neisseria gonorrhoeae can modulate gonococcal susceptibility to normal human serumInnate Immunity, 2002
- Complement Processing and Immunoglobulin Binding toNeisseria gonorrhoeaeDetermined In Vitro Simulates In Vivo EffectsThe Journal of Infectious Diseases, 1999
- Membrane cofactor protein: Importance of N- and O-glycosylation for complement regulatory functionMolecular Immunology, 1998
- Conservation of the lipooligosaccharide synthesis locus lgt among strains of Neisseria gonorrhoeae: requirement for lgtE in synthesis of the 2C7 epitope and of the beta chain of strain 15253.The Journal of Experimental Medicine, 1996
- Modification by Sialic Acid of Neisseria gonorrhoeae Lipooligosaccharide Epitope Expression in Human Urethral Exudates: An Immunoelectron Microscopic AnalysisThe Journal of Infectious Diseases, 1990
- Gonococcal pilin variants in experimental gonorrhea.The Journal of Experimental Medicine, 1987
- Immunological Basis of Serum Resistance of Neisseria gonorrhoeaeMicrobiology, 1982
- SENSITIVITY OF N. GONORRHOEAE TO ANTIBIOTICSSexually Transmitted Infections, 1961