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In Vivo Assembly of Artificial Metalloenzymes and Application in Whole-Cell Biocatalysis*.


ABSTRACT: We report the supramolecular assembly of artificial metalloenzymes (ArMs), based on the Lactococcal multidrug resistance regulator (LmrR) and an exogeneous copper(II)-phenanthroline complex, in the cytoplasm of E. coli cells. A combination of catalysis, cell-fractionation, and inhibitor experiments, supplemented with in-cell solid-state NMR spectroscopy, confirmed the in-cell assembly. The ArM-containing whole cells were active in the catalysis of the enantioselective Friedel-Crafts alkylation of indoles and the Diels-Alder reaction of azachalcone with cyclopentadiene. Directed evolution resulted in two different improved mutants for both reactions, LmrR_A92E_M8D and LmrR_A92E_V15A, respectively. The whole-cell ArM system required no engineering of the microbial host, the protein scaffold, or the cofactor to achieve ArM assembly and catalysis. We consider this a key step towards integrating abiological catalysis with biosynthesis to generate a hybrid metabolism.

SUBMITTER: Chordia S 

PROVIDER: S-EPMC7986609 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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In Vivo Assembly of Artificial Metalloenzymes and Application in Whole-Cell Biocatalysis*.

Chordia Shreyans S   Narasimhan Siddarth S   Lucini Paioni Alessandra A   Baldus Marc M   Roelfes Gerard G  

Angewandte Chemie (International ed. in English) 20210201 11


We report the supramolecular assembly of artificial metalloenzymes (ArMs), based on the Lactococcal multidrug resistance regulator (LmrR) and an exogeneous copper(II)-phenanthroline complex, in the cytoplasm of E. coli cells. A combination of catalysis, cell-fractionation, and inhibitor experiments, supplemented with in-cell solid-state NMR spectroscopy, confirmed the in-cell assembly. The ArM-containing whole cells were active in the catalysis of the enantioselective Friedel-Crafts alkylation o  ...[more]

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