Directed evolution of proteins by exon shuffling
- 1 May 2001
- journal article
- review article
- Published by Springer Nature in Nature Biotechnology
- Vol. 19 (5), 423-428
- https://doi.org/10.1038/88084
Abstract
Evolution of eukaryotes is mediated by sexual recombination of parental genomes. Crossovers occur in random, but homologous, positions at a frequency that depends on DNA length. As exons occupy only 1% of the human genome and introns about 24%, by far most of the crossovers occur between exons, rather than inside. The natural process of creating new combinations of exons by intronic recombination is called exon shuffling. Our group is developing in vitro formats for exon shuffling and applying these to the directed evolution of proteins. Based on the splice frame junctions, nine classes of exons and three classes of introns can be distinguished. Splice frame diagrams of natural genes show how the splice frame rules govern exon shuffling. Here, we review various approaches to constructing libraries of exon-shuffled genes. For example, exon shuffling of human pharmaceutical proteins can generate libraries in which all of the sequences are fully human, without the point mutations that raise concerns about immunogenicity.Keywords
This publication has 82 references indexed in Scilit:
- Interaction of mutants of tissue-type plasminogen activator with liver cells: effect of domain deletionsBiochemical Journal, 1996
- Mechanisms of Intron MobilityJournal of Biological Chemistry, 1995
- THE MULTIPLICITY OF DOMAINS IN PROTEINSAnnual Review of Biochemistry, 1995
- Introns and exonsCurrent Opinion in Structural Biology, 1994
- Mobile modules and motifsCurrent Opinion in Structural Biology, 1992
- Modular exchange principles in proteinsCurrent Opinion in Structural Biology, 1991
- Intron‐dependent evolution: Preferred types of exons and intronsFEBS Letters, 1987
- Evolution of the proteases of blood coagulation and fibrinolysis by assembly from modulesCell, 1985
- Speculations on RNA splicingCell, 1981
- Why genes in pieces?Nature, 1978