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Orthogonal Luciferase-Luciferin Pairs for Bioluminescence Imaging.


ABSTRACT: Bioluminescence imaging with luciferase-luciferin pairs is widely used in biomedical research. Several luciferases have been identified in nature, and many have been adapted for tracking cells in whole animals. Unfortunately, the optimal luciferases for imaging in vivo utilize the same substrate and therefore cannot easily differentiate multiple cell types in a single subject. To develop a broader set of distinguishable probes, we crafted custom luciferins that can be selectively processed by engineered luciferases. Libraries of mutant enzymes were iteratively screened with sterically modified luciferins, and orthogonal enzyme-substrate "hits" were identified. These tools produced light when complementary enzyme-substrate partners interacted both in vitro and in cultured cell models. Based on their selectivity, these designer pairs will bolster multicomponent imaging and enable the direct interrogation of cell networks not currently possible with existing tools. Our screening platform is also general and will expedite the identification of more unique luciferases and luciferins, further expanding the bioluminescence toolkit.

SUBMITTER: Jones KA 

PROVIDER: S-EPMC5452985 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Orthogonal Luciferase-Luciferin Pairs for Bioluminescence Imaging.

Jones Krysten A KA   Porterfield William B WB   Rathbun Colin M CM   McCutcheon David C DC   Paley Miranda A MA   Prescher Jennifer A JA  

Journal of the American Chemical Society 20170203 6


Bioluminescence imaging with luciferase-luciferin pairs is widely used in biomedical research. Several luciferases have been identified in nature, and many have been adapted for tracking cells in whole animals. Unfortunately, the optimal luciferases for imaging in vivo utilize the same substrate and therefore cannot easily differentiate multiple cell types in a single subject. To develop a broader set of distinguishable probes, we crafted custom luciferins that can be selectively processed by en  ...[more]

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