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Mechanism of the C5 stereoinversion reaction in the biosynthesis of carbapenem antibiotics.


ABSTRACT: The bicyclic ?-lactam/2-pyrrolidine precursor to all carbapenem antibiotics is biosynthesized by attachment of a carboxymethylene unit to C5 of L-proline followed by ?-lactam ring closure. Carbapenem synthase (CarC), an Fe(II) and 2-(oxo)glutarate (Fe/2OG)-dependent oxygenase, then inverts the C5 configuration. Here we report the structure of CarC in complex with its substrate and biophysical dissection of its reaction to reveal the stereoinversion mechanism. An Fe(IV)-oxo intermediate abstracts the hydrogen (H•) from C5, and tyrosine 165, a residue not visualized in the published structures of CarC lacking bound substrate, donates H• to the opposite face of the resultant radical. The reaction oxidizes the Fe(II) cofactor to Fe(III), limiting wild-type CarC to one turnover, but substitution of the H•-donating tyrosine disables stereoinversion and confers to CarC the capacity for catalytic substrate oxidation.

SUBMITTER: Chang WC 

PROVIDER: S-EPMC4160820 | biostudies-literature | 2014 Mar

REPOSITORIES: biostudies-literature

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Mechanism of the C5 stereoinversion reaction in the biosynthesis of carbapenem antibiotics.

Chang Wei-chen WC   Guo Yisong Y   Wang Chen C   Butch Susan E SE   Rosenzweig Amy C AC   Boal Amie K AK   Krebs Carsten C   Bollinger J Martin JM  

Science (New York, N.Y.) 20140301 6175


The bicyclic β-lactam/2-pyrrolidine precursor to all carbapenem antibiotics is biosynthesized by attachment of a carboxymethylene unit to C5 of L-proline followed by β-lactam ring closure. Carbapenem synthase (CarC), an Fe(II) and 2-(oxo)glutarate (Fe/2OG)-dependent oxygenase, then inverts the C5 configuration. Here we report the structure of CarC in complex with its substrate and biophysical dissection of its reaction to reveal the stereoinversion mechanism. An Fe(IV)-oxo intermediate abstracts  ...[more]

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