High-throughput mutagenesis to evaluate models of stereochemical control in ketoreductase domains from the erythromycin polyketide synthase.

Imagen de Abel Baerga-Ortiz
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TítuloHigh-throughput mutagenesis to evaluate models of stereochemical control in ketoreductase domains from the erythromycin polyketide synthase.
Publication TypeJournal Article
Year of Publication2006
AutoresO'Hare, HM, Baerga-Ortiz, A, Popovic, B, Spencer, JB, Leadlay, PF
JournalChem Biol
Volume13
Issue3
Pagination287-96
Date Published2006 Mar
ISSN1074-5521
Palabras claveAmino Acid Sequence, Binding Sites, Catalysis, Chromatography, High Pressure Liquid, Molecular Conformation, Molecular Sequence Data, Mutagenesis, Oxidation-Reduction, Oxidoreductases, Polyketide Synthases, Protein Structure, Tertiary, Stereoisomerism, Substrate Specificity
Abstract

Ketoreductase (KR) activities help determine the stereochemistry of the products of modular polyketide synthases (PKSs). For example, domains eryKR(1) and eryKR(2), contained, respectively, in the first and second extension modules of the erythromycin-producing PKS, reduce 3-ketoacyl-thioester intermediates with opposite stereospecificity. Amino acid motifs that correlate with stereochemical outcome have been identified in KRs. We have used saturation mutagenesis of these motifs in eryKR(1) and eryKR(2), and a microplate-based screen of such mutants for activity against (9R, S)-trans-1-decalone, to identify candidate enzymes potentially altered in stereocontrol. Active mutants were reassayed with (2R, S)-2-methyl-3-oxopentanoic acid N-acetylcysteamine thioester, and the alcohol products were analyzed by chiral HPLC. Variant enzymes were found with either altered substrate selectivity for the (2R) or (2S) substrate or altered stereospecificity of reduction, or both, further highlighting the importance of these motifs in stereochemical control.

DOI10.1016/j.chembiol.2006.01.003
Alternate JournalChem. Biol.
PubMed ID16638534