Directed evolution of λ integrase activity and specificity by genetic derepression

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Abstract

Advances in genome engineering are attendant on the development of novel enzyme variants with programed substrate specificities and improved activity. We have devised a novel selection method, wherein the activity of a recombinase deletes the gene encoding an inhibitor of an enzyme conferring a selectable phenotype. By using β-lactamase and the β-lactamase inhibitor protein, the selection couples recombinase activity to Escherichia coli survival in the presence of ampicillin. Using this method, we generated λ integrase variants displaying improved in vitro recombination of a non-cognate substrate present in the human genome. One generalist integrase variant displaying enhanced catalytic activity was further used in a facile, single-step transformation method to introduce transgenes up to 8.5 kb into the unique endogenous attB site of common laboratory E.coli strains.

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CITATION STYLE

APA

Siau, J. W., Chee, S., Makhija, H., Wai, C. M. M., Chandra, S. H. V., Peter, S., … Ghadessy, F. J. (2015). Directed evolution of λ integrase activity and specificity by genetic derepression. Protein Engineering, Design and Selection, 28(7), 211–220. https://doi.org/10.1093/protein/gzv015

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