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- 2011 Annual Meeting
- Food, Pharmaceutical & Bioengineering Division
- Advances In Protein Structure, Function and Stability II
- (65f) Engineered, Peptide BINDING Chaperones for Membrane PROTEIN Crystallization
We have developed candidate scFv chaperone proteins binding hexa-histidine, EYMPME (EE) and FLAG tags. The scFv’s were engineered via site-directed and random mutagenesis in conjunction with phage display to improve biophysical features influencing crystallization propensity, including peptide affinity and specificity, stability, solubility and expression level. Selected variants exhibit high solubility (up to 16.6 mg/ml) and nanomolar peptide binding affinities; complexes of one chaperone with the signal peptide peptidase integral membrane proteins harboring an internal EE tag has been isolated by gel filtration. Three of these scFv chaperones have been crystallized. The 3.1 Å resolution structure of this chaperone reveals a binding surface complementary to the EE peptide and a ~52 Å channel in the crystal lattice. These engineered scFvs represent a new class of chaperones that may eliminate the need for de novo identification of candidate chaperones from large antibody libraries.