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Published on: December 15, 2011
Epitopes recognised by tissue transglutaminase antibodies in coeliac disease
Ken Nakachi1, Michael Powell, Gillian Swift
1FIRS Laboratories, RSR Ltd, Parc Ty Glas, Llanishen, Cardiff CF14 5DU, UK.
The interaction between IgA tissue transglutaminase (tTG) antibodies (Abs) and 35S-labelled tTG produced in a transcription/translation (TnT) system with various amino acid (aa) deletions has been studied. These experiments showed that the tTG N-terminal aa 1-89 were important for tTG Ab binding in all 15 coeliac disease sera studied and the central residues (aa 401-491) were important for binding of tTG Abs in all but one sera. The contribution of C-terminal residues to tTG Ab binding varied in different coeliac sera but overall was less than the contributions of the N terminal and central regions. Mouse monoclonal antibodies (MAbs) to tTG were produced and the tTG aa sequences recognised by the MAbs determined using modified 35S-labelled tTG proteins. Analysis of the inhibiting effects of patient sera tTG Ab on binding of tTG MAbs to tTG confirmed the importance of the N-terminal and central regions of tTG in forming serum tTG Ab binding sites. Recombinant human tTG was expressed in yeast and purified to better than 95% homogeneity using MAb affinity chromatography as a final purification step. This material was highly suitable for use in an ELISA for tTGAb.
The interaction between IgA tissue transglutaminase (tTG) antibodies (Abs) and 35S-labelled tTG produced in a transcription/translation (TnT) system with various amino acid (aa) deletions has been studied. These experiments showed that the tTG N-terminal aa 1-89 were important for tTG Ab binding in all 15 coeliac disease sera studied and the central residues (aa 401-491) were important for binding of tTG Abs in all but one sera. The contribution of C-terminal residues to tTG Ab binding varied in different coeliac sera but overall was less than the contributions of the N terminal and central regions. Mouse monoclonal antibodies (MAbs) to tTG were produced and the tTG aa sequences recognised by the MAbs determined using modified 35S-labelled tTG proteins. Analysis of the inhibiting effects of patient sera tTG Ab on binding of tTG MAbs to tTG confirmed the importance of the N-terminal and central regions of tTG in forming serum tTG Ab binding sites. Recombinant human tTG was expressed in yeast and purified to better than 95% homogeneity using MAb affinity chromatography as a final purification step. This material was highly suitable for use in an ELISA for tTGAb.
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