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PMID: 9422084 Published · ppublish English Journal Article Review

Summary report on the ISOBM TD-4 Workshop: analysis of 56 monoclonal antibodies against the MUC1 mucin. San Diego, Calif., November 17-23, 1996.

Price MR, Rye PD, Petrakou E, Murray A, Brady K, Imai S, Haga S, Kiyozuka Y, Schol D, Meulenbroek MF, Snijdewint FG, von Mensdorff-Pouilly S, Verstraeten RA, Kenemans P, Blockzjil A, Nilsson K, Nilsson O, Reddish M, Suresh MR, Koganty RR, Fortier S, Baronic L, Berg A, Longenecker MB, Hilgers J

Abstract

Sixteen research groups participated in the ISOBM TD-4 Workshop in which the reactivity and specificity of 56 monoclonal antibodies against the MUC1 mucin was investigated using a diverse panel of target antigens and MUC1 mucin-related synthetic peptides and glycopeptides. The majority of antibodies (34/56) defined epitopes located within the 20-amino acid tandem repeat sequence of the MUC1 mucin protein core. Of the remaining 22 antibodies, there was evidence for the involvement of carbohydrate residues in the epitopes for 16 antibodies. There was no obvious relationship between the type of immunogen and the specificity of each antibody. Synthetic peptides and glycopeptides were analyzed for their reactivity with each antibody either by assay of direct binding (e.g. by ELISA or BiaCore) or by determining the capacity of synthetic ligands to inhibit antibody binding interactions. There was good concordance between the research groups in identifying antibodies reactive with peptide epitopes within the MUC1 protein core. Epitope mapping tests were performed using the Pepscan analysis for antibody reactivity against overlapping synthetic peptides, and results were largely consistent between research groups. The dominant feature of epitopes within the MUC1 protein core was the presence, in full or part, of the hydrophilic sequence of PDTRAPAP. Carbohydrate epitopes were less easily characterized and the most useful reagents in this respect were defined oligosaccharides, rather than purified mucin preparations enriched in particular carbohydrate moieties. It was evident that carbohydrate residues were involved in many epitopes, by regulating epitope accessibility or masking determinants, or by stabilizing preferred conformations of peptide epitopes within the MUC1 protein core. Overall, the studies, highlight concordance between groups rather than exposing inconsistencies which gives added confidence to the results of analyses of the specificity of antimucin monoclonal antibodies.

MeSH Terms
Amino Acid Sequence Animals Antibodies, Monoclonal/analysis Antibody Affinity/immunology Antibody Specificity/immunology Enzyme-Linked Immunosorbent Assay Female Humans Immunodominant Epitopes/immunology Male Mice Molecular Sequence Data Mucin-1/immunology Peptide Fragments/immunology
Chemicals
Antibodies, Monoclonal Immunodominant Epitopes Mucin-1 Peptide Fragments
Authors & Affiliations
25 authors, click to expand affiliations / ORCID
Price M R
Cancer Research Laboratory, University of Nottingham, UK.
Rye P D
Petrakou E
Murray A
Brady K
Imai S
Haga S
Kiyozuka Y
Schol D
Meulenbroek M F
Snijdewint F G
von Mensdorff-Pouilly S
Verstraeten R A
Kenemans P
Blockzjil A
Nilsson K
Nilsson O
Reddish M
Suresh M R
Koganty R R
Fortier S
Baronic L
Berg A
Longenecker M B
Hilgers J
Article Info
Journal
Tumour biology : the journal of the International Society for Oncodevelopmental Biology and Medicine
Abbr.
Tumour Biol
ISSN
1010-4283
Published
1998-00-00
Pages
1-20
Language
English
Region
Netherlands
NLM ID
8409922
Subset
IM
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