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Effect of the Nonreducing End of Shigella Dysenteriae Type 1 O-specific Oligosaccharides on Their Immunogenicity As Conjugates in Mice

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Specialty Science
Date 2007 Aug 30
PMID 17726093
Citations 21
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Abstract

Endemic and epidemic shigellosis, an acute invasive disease of the lower intestines, afflicts millions of people worldwide with an estimated one million fatalities per annum at a low infectious dose. Our approach to vaccine development against Shigella is based on the hypothesis that serum IgG antibodies to the O-specific polysaccharide (O-SP) domains of the LPS of these organisms confer protection to infection. The synthetic oligosaccharides corresponding to the tetrasaccharide repeating unit of the O-SP of Shigella dysenteriae type 1 covalently linked to human serum albumin elicited O-SP-specific IgG in mice. The antibody levels were a function of both the saccharide chain length and their loading on the protein. These synthetic saccharide conjugates elicited significantly higher levels of IgG anti O-SP than conjugates prepared with the O-SP from the bacteria. Here, we evaluated the influence of the nonreducing terminal monosaccharide on the serum antibody response. To this end, we prepared synthetic oligosaccharides comprising hexa- to tridecasaccharide fragments of the native O-SP, having one of the four monosaccharide residues that constitute the repeating unit at their termini and bound them to BSA by a single-point attachment. The conjugates contained an average of 19 saccharide chains per BSA. The synthetic oligosaccharides inhibited the binding of serum raised against whole bacteria to its LPS to a similar extent but lower than the native O-SP. The highest anti-LPS levels were elicited by conjugates having N-acetylglucosamine (10-mer) or galactose residues (7- and 11-mers) at their nonreducing termini.

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References
1.
Kotloff K, Winickoff J, Ivanoff B, Clemens J, Swerdlow D, Sansonetti P . Global burden of Shigella infections: implications for vaccine development and implementation of control strategies. Bull World Health Organ. 1999; 77(8):651-66. PMC: 2557719. View

2.
Fekete A, Hoogerhout P, Zomer G, Kubler-Kielb J, Schneerson R, Robbins J . Synthesis of octa- and dodecamers of D-ribitol-1-phosphate and their protein conjugates. Carbohydr Res. 2006; 341(12):2037-48. DOI: 10.1016/j.carres.2005.10.023. View

3.
Sturm S, JANN B, Jann K, Fortnagel P, Timmis K . Genetic and biochemical analysis of Shigella dysenteriae 1 O antigen polysaccharide biosynthesis in Escherichia coli K-12: 9 kb plasmid of S. dysenteriae 1 determines addition of a galactose residue to the lipopolysaccharide core. Microb Pathog. 1986; 1(3):299-306. DOI: 10.1016/0882-4010(86)90055-0. View

4.
Robbins J, Chu C, Schneerson R . Hypothesis for vaccine development: protective immunity to enteric diseases caused by nontyphoidal salmonellae and shigellae may be conferred by serum IgG antibodies to the O-specific polysaccharide of their lipopolysaccharides. Clin Infect Dis. 1992; 15(2):346-61. DOI: 10.1093/clinids/15.2.346. View

5.
Bernatowicz M, Matsueda G . Preparation of peptide-protein immunogens using N-succinimidyl bromoacetate as a heterobifunctional crosslinking reagent. Anal Biochem. 1986; 155(1):95-102. DOI: 10.1016/0003-2697(86)90231-9. View