2016 AIChE Annual Meeting
(228cb) Rare Residues Mutation Approach for Changing Specificity of Antibody
Authors
We first constructed a single chain fragment of variable region (scFv) format of MsMab-1 antibody that allows us to perform high throughput functional analysis of MsMab-1 mutants. We transformed E. coli with the vectors encoding scFv of MsMab-1. The specificity of MsMab-1 scFv against various R132-mutated IDH1 was measured by sandwich ELISA. As a results, MsMab-1 scFv showed specificity against four R132-mutated IDH1, indicating that MsMab-1 scFv retained the multi-specificity of its parental antibody, MsMab-1 IgG.
Next, we attempted to improve multi-septicity of MsMab-1 scFv by a site-specific mutagenesis. Because MsMab-1 antibody has an unique molecular recognition mechanism, we focused on unusual amino acid residues of MsMab-1 compared to other antibodies. We prepared all mutants at these amino acid residues, respectively. High throughput functional analysis revealed that Cys 47 residue in VH was critical for multi-specificity of MsMab-1. Unexpectedly, a C47N mutant showed improved affinity and multi-specificity. These results suggest that rare residue in variable domains influences specificity of antibody.
Together, we succeeded in preparing MsMab-1 scFv and found that rare residues influenced the specificity of MsMab-1. We are currently working on further improving multi-specificity by introducing mutations at multiple rare residues.
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