A phage display system for studying the sequence determinants of protein folding
- 1 June 1995
- journal article
- research article
- Published by Wiley in Protein Science
- Vol. 4 (6) , 1108-1117
- https://doi.org/10.1002/pro.5560040609
Abstract
We have developed a phage display system that provides a means to select variants of the IgG binding domain of peptostreptococcal protein L that fold from large combinatorial libraries. The premise underlying the selection scheme is that binding of protein L to IgG requires that the protein be properly folded. Using a combination of molecular biological and biophysical methods, we show that this assumption is valid. First, the phage selection procedure strongly selects against a point mutation in protein L that disrupts folding but is not in the IgG binding interface. Second, variants recovered from a library in which the first third of protein L was randomized are properly folded. The degree of sequence variation in the selected population is striking: the variants have as many as nine substitutions in the 14 residues that were mutagenized. The approach provides a selection for “foldedness” that is potentially applicable to any small binding protein.Keywords
This publication has 26 references indexed in Scilit:
- Redesigning the hydrophobic core of a four‐helix‐bundle proteinProtein Science, 1994
- Three-dimensional solution structure of an immunoglobulin light chain-binding domain of protein L. Comparison with the IgG-binding domains of protein GBiochemistry, 1994
- The Role of Backbone Flexibility in the Accommodation of Variants That Repack the Core of T4 LysozymeScience, 1993
- Proton nuclear magnetic resonance sequential assignments and secondary structure of an immunoglobulin light chain-binding domain of protein LBiochemistry, 1993
- 1.67-.ANG. X-ray structure of the B2 immunoglobulin-binding domain of streptococcal protein G and comparison to the NMR structure of the B1 domainBiochemistry, 1992
- Structural and energetic consequences of disruptive mutations in a protein coreBiochemistry, 1992
- Design, construction and function of a multicopy display vector using fusions to the major coat protein of bacteriophage M13Gene, 1991
- Selecting high-affinity binding proteins by monovalent phage displayBiochemistry, 1991
- Similarity of Protein G and UbiquitinScience, 1991
- Searching for Peptide Ligands with an Epitope LibraryScience, 1990