4.6 Article

Multiply mutated Gaussia luciferases provide prolonged and intense bioluminescence

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ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2009.09.006

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Gaussia luciferase; Bioluminescence kinetics; Cell-free protein synthesis; Non-natural amino acids; Bioconjugation

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Gaussia luciferase (GLuc) from the copepod Caussia princeps is both the smallest and brightest known luciferase. GLuc catalyzes the oxidation of coelenterazine to produce an intense blue light but with a very short emission half-life. We report mutated GLucs with much longer luminescence half-lives that retain the same initial intensity as the wild-type enzyme. The GLuc variants were produced using cell-free protein synthesis to provide high yields and rapid production of fully active product as well as simple non-natural amino acid substitution. By incorporating homopropargylglycine and attaching PEG using azide-alkyne click reactions, we also show that the four methionines in GLuc are surface accessible. The mutants provide a significantly improved reporter protein for both in vivo and in vitro studies, and the Successful non-natural amino acid incorporation and PEG attachment indicate the feasibility of producing useful bioconjugates using click attachment reactions. (C) 2009 Elsevier Inc. All rights reserved.

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