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Polyketide synthesis in vitro on a modular polyketide synthase

Authors :
Peter F. Leadlay
Kirsten E. H. Wiesmann
Jesus Cortes
Annabel L. Cutter
Murray J. B. Brown
James Staunton
Source :
Chemistry & Biology. 2:583-589
Publication Year :
1995
Publisher :
Elsevier BV, 1995.

Abstract

Background: The 6-deoxyerythronolide B synthase (DEBS) of Saccharopolyspora erythraea , which synthesizes the aglycone core of the antibiotic erythromycin A, contains some 30 active sites distributed between three multienzyme polypeptides (designated DEBS1–3). This complexity has hitherto frustrated mechanistic analysis of such enzymes. We previously produced a mutant strain of S. erythraea in which the chain-terminating cyclase domain (TE) is fused to the carboxyl-terminus of DEBS1, the multienzyme that catalyzes the first two rounds of polyketide chain extension in S. erythraea . This mutant strain produces triketide lactone in vivo . We set out to purify the chimaeric enzyme and to determine its activity in vitro . Results: The purified DEBS1-TE multienzyme catalyzes synthesis of triketide lactones in vitro . The synthase specifically uses the (2S)-isomer of methylmalonyl-CoA, as previously proposed, but has a more relaxed specificity for the starter unit than in vivo . Conclusions: We have obtained a purified polyketide synthase system, derived from DEBS, which retains catalytic activity. This approach opens the way for mechanistic and structural analyses of active multienzymes derived from any modular polyketide synthase.

Details

ISSN :
10745521
Volume :
2
Database :
OpenAIRE
Journal :
Chemistry & Biology
Accession number :
edsair.doi.dedup.....e93edc026a6cdeb9f958009c1799fe7b
Full Text :
https://doi.org/10.1016/1074-5521(95)90122-1