| Literature DB >> 16242657 |
Alexandros P Siskos1, Abel Baerga-Ortiz, Shilpa Bali, Viktor Stein, Hassan Mamdani, Dieter Spiteller, Bojana Popovic, Jonathan B Spencer, James Staunton, Kira J Weissman, Peter F Leadlay.
Abstract
A system is reported for the recombinant expression of individual ketoreductase (KR) domains from modular polyketide synthases (PKSs) and scrutiny of their intrinsic specificity and stereospecificity toward surrogate diketide substrates. The eryKR(1) and the tylKR(1) domains, derived from the first extension module of the erythromycin PKS and the tylosin PKS, respectively, both catalyzed reduction of (2R, S)-2-methyl-3-oxopentanoic acid N-acetylcysteamine thioester, with complete stereoselectivity and stereospecificity, even though the substrate is not tethered to an acyl carrier protein or an intact PKS multienzyme. In contrast, and to varying degrees, the isolated enzymes eryKR(2), eryKR(5), and eryKR(6) exercised poorer control over substrate selection and the stereochemical course of ketoreduction. These data, together with modeling of diketide binding to KR(1) and KR(2), demonstrate the fine energetic balance between alternative modes of presentation of ketoacylthioester substrates to KR active sites.Entities:
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Year: 2005 PMID: 16242657 DOI: 10.1016/j.chembiol.2005.08.017
Source DB: PubMed Journal: Chem Biol ISSN: 1074-5521