» Articles » PMID: 18559369

A One-pot, Simple Methodology for Cassette Randomisation and Recombination for Focused Directed Evolution

Overview
Date 2008 Jun 19
PMID 18559369
Citations 8
Authors
Affiliations
Soon will be listed here.
Abstract

Protein engineering is currently performed either by rational design, focusing in most cases on only a few positions modified by site-directed mutagenesis, or by directed molecular evolution, in which the entire protein-encoding gene is subjected to random mutagenesis followed by screening or selection of desired phenotypes. A novel alternative is focused directed evolution, in which only fragments of a protein are randomised while the overall scaffold of a protein remains unchanged. For this purpose, we developed a PCR technique using long, spiked oligonucleotides, which allow randomising of one or several cassettes in any given position of a gene. This method allows over 95% incorporation of mutations independently of their position within the gene, yielding sufficient product to generate large libraries, and the possibility of simultaneously randomising more than one locus at a time, thus originating recombination. The high efficiency of this method was verified by creating focused mutant libraries of Pseudomonas fluorescens esterase I (PFEI), screening for altered substrate selectivity and validating against libraries created by error-prone PCR. This led to the identification of two mutants within the OSCARR library with a 10-fold higher catalytic efficiency towards p-nitrophenyl dodecanoate. These PFEI variants were also modelled in order to explain the observed effects.

Citing Articles

Optimization of multi-site nicking mutagenesis for generation of large, user-defined combinatorial libraries.

Kirby M, Medina-Cucurella A, Baumer Z, Whitehead T Protein Eng Des Sel. 2021; 34.

PMID: 34341824 PMC: 8502461. DOI: 10.1093/protein/gzab017.


Cognizance of Molecular Methods for the Generation of Mutagenic Phage Display Antibody Libraries for Affinity Maturation.

Lim C, Choong Y, Lim T Int J Mol Sci. 2019; 20(8).

PMID: 30991723 PMC: 6515083. DOI: 10.3390/ijms20081861.


Spiked Genes: A Method to Introduce Random Point Nucleotide Mutations Evenly throughout an Entire Gene Using a Complete Set of Spiked Oligonucleotides for the Assembly.

Carcamo E, Roldan-Salgado A, Osuna J, Bello-Sanmartin I, Yanez J, Saab-Rincon G ACS Omega. 2018; 2(7):3183-3191.

PMID: 30023688 PMC: 6044943. DOI: 10.1021/acsomega.7b00508.


Point mutation Arg153-His at surface of Bacillus lipase contributing towards increased thermostability and ester synthesis: insight into molecular network.

Chopra N, Kaur J Mol Cell Biochem. 2017; 443(1-2):159-168.

PMID: 29086164 DOI: 10.1007/s11010-017-3220-9.


Synthetic biology for the directed evolution of protein biocatalysts: navigating sequence space intelligently.

Currin A, Swainston N, Day P, Kell D Chem Soc Rev. 2014; 44(5):1172-239.

PMID: 25503938 PMC: 4349129. DOI: 10.1039/c4cs00351a.