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Directed evolution of RebH for site-selective halogenation of large biologically active molecules.


ABSTRACT: We recently characterized the substrate scope of wild-type RebH and proceeded to evolve variants of this enzyme with improved stability for biocatalysis. The substrate scopes of both RebH and the stabilized variants, however, are limited primarily to compounds similar in size to tryptophan. A substrate walking approach was used to further evolve RebH variants with expanded substrate scope. Two particularly notable variants were identified: 3-SS, which provides high conversion of tricyclic tryptoline derivatives; and 4-V, which accepts a broad range of large indoles and carbazoles. This constitutes the first reported use of directed evolution to enable the functionalization of substrates not accepted by wild-type RebH and demonstrates the utility of RebH variants for the site-selective halogenation of biologically active compounds.

SUBMITTER: Payne JT 

PROVIDER: S-EPMC4506780 | biostudies-literature | 2015 Mar

REPOSITORIES: biostudies-literature

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Directed evolution of RebH for site-selective halogenation of large biologically active molecules.

Payne James T JT   Poor Catherine B CB   Lewis Jared C JC  

Angewandte Chemie (International ed. in English) 20150209 14


We recently characterized the substrate scope of wild-type RebH and proceeded to evolve variants of this enzyme with improved stability for biocatalysis. The substrate scopes of both RebH and the stabilized variants, however, are limited primarily to compounds similar in size to tryptophan. A substrate walking approach was used to further evolve RebH variants with expanded substrate scope. Two particularly notable variants were identified: 3-SS, which provides high conversion of tricyclic trypto  ...[more]

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