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Clinical and Diagnostic Laboratory Immunology, November 1999, p. 838-843, Vol. 6, No. 6
1071-412X/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.

Comparative Analysis of Two Meningococcal Immunotyping Monoclonal Antibodies by Resonant Mirror Biosensor and Antibody Gene Sequencing

Bambos M. Charalambous,1 Janet Evans,2 Ian M. Feavers,2 and Martin C. J. Maiden3,*

Department of Biochemistry and Molecular Biology, Royal Free and University College Medical School, Royal Free Campus, London NW3 2PF,1 Division of Bacteriology, National Institute for Biological Standards and Control, South Mimms, Potters Bar, Herts EN6 3QG,2 and Wellcome Trust Centre for the Epidemiology of Infectious Diseases, Department of Zoology, University of Oxford, Oxford OX1 3PS,3 United Kingdom

Received 10 February 1999/Returned for modification 9 June 1999/Accepted 29 July 1999

Lipooligosaccharide (LOS) is a major surface component of the cell walls of Neisseria meningitidis, which is important for its roles in pathogenesis and antigenic variation, as a target for immunological typing, and as a possible vaccine component. Although the structures of many antigenic variants have been determined, routine immunological typing of these molecules remains problematic. Resonant mirror analysis was combined with gene sequencing to characterize two monoclonal antibodies (MAbs) used in typing panels that were raised against the same LOS immunotype, L3,7,9. The two MAbs (MAb 4A8-B2 and MAb 9-2-L379) were of the same immunoglobulin subtype, but while MAb 9-2-L379 was more than a 1,000-fold more sensitive in immunotyping assays of both whole meningococcal cells and purified LOS, MAb 4A8-B2 was more specific for immunotype L3,7,9. The differences in sensitivity were a consequence of MAb 9-2-L379 having a 44-fold-faster association constant than MAb 4A8-B2. Comparison of the amino acid sequences of the variable chains of the MAbs revealed that they had very similar heavy chains (81% amino acid sequence identity) but diverse light chains (54% sequence identity). The differential binding kinetics and specificities observed with these MAbs were probably due to differences in the epitopes recognized, and these were probably a consequence of the different immunization protocols used in their production.


* Corresponding author. Mailing address: Wellcome Trust Centre for the Epidemiology of Infectious Disease, Department of Zoology, University of Oxford, South Parks Rd., Oxford OX1 3PS, United Kingdom. Phone: 44-1865-271284. Fax: 44-1865-271284. E-mail: martin.maiden{at}zoo.ox.ac.uk.


Clinical and Diagnostic Laboratory Immunology, November 1999, p. 838-843, Vol. 6, No. 6
1071-412X/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.



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