A strategy of exon shuffling for making large peptide repertoires displayed on filamentous bacteriophage.
- 23 July 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (15) , 7761-7766
- https://doi.org/10.1073/pnas.93.15.7761
Abstract
It has been suggested that recombination and shuffling between exons has been a key feature in the evolution of proteins. We propose that this strategy could also be used for the artificial evolution of proteins in bacteria. As a first step, we illustrate the use of a self-splicing group I intron with inserted lox-Cre recombination site to assemble a very large combinatorial repertoire (> 10(11) members) of peptides from two different exons. Each exon comprised a repertoire of 10 random amino acids residues; after splicing, the repertoires were joined together through a central five-residue spacer to give a combinatorial repertoire of 25-residue peptides. The repertoire was displayed on filamentous bacteriophage by fusion to the pIII phage coat protein and selected by binding to several proteins, including beta-glucuronidase. One of the peptides selected against beta-glucuronidase was chemically synthesized and shown to inhibit the enzymatic activity (inhibition constant: 17 nM); by further exon shuffling, an improved inhibitor was isolated (inhibition constant: 7 nM). Not only does this approach provide the means for making very large peptide repertoires, but we anticipate that by introducing constraints in the sequences of the peptides and of the linker, it may be possible to evolve small folded peptides and proteins.Keywords
This publication has 30 references indexed in Scilit:
- Synthesis of Proteins by Native Chemical LigationScience, 1994
- Protein-protein recognition: Crystal structural analysis of a barnase-barstar complex at 2.0-.ANG. resolutionBiochemistry, 1994
- Epitope mapping using bacteriophage peptide librariesCurrent Opinion in Immunology, 1993
- Mutant conformation of p53: Precise epitope mapping using a filamentous phage epitope libraryJournal of Molecular Biology, 1992
- Making antibody fragments using phage display librariesNature, 1991
- Phage antibodies: filamentous phage displaying antibody variable domainsNature, 1990
- One binding site determines sequence specificity of Tetrahymena pre-rRNA self-splicing, trans-splicing, and RNA enzyme activityCell, 1986
- Host/vector interactions which affect the viability of recombinant phage lambda clonesGene, 1986
- Coupling of Tetrahymena Ribosomal RNA Splicing to β-Galactosidase Expression in Escherichia coliScience, 1985
- The tetrahymena rRNA intron self-splices in E. coli: In vivo evidence for the importance of key base-paired regions of RNA for RNA enzyme functionCell, 1985