Polyketide double bond biosynthesis. Mechanistic analysis of the dehydratase-containing module 2 of the picromycin/methymycin polyketide synthase

被引:62
作者
Wu, JQ
Zaleski, TJ
Valenzano, C
Khosla, C
Cane, DE
机构
[1] Brown Univ, Dept Chem, Providence, RI 02912 USA
[2] Stanford Univ, Dept Chem Engn, Stanford, CA 94305 USA
[3] Stanford Univ, Dept Chem & Biochem, Stanford, CA 94305 USA
关键词
D O I
10.1021/ja055672+
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Picromycin/methymycin synthase (PICS) is a modular polyketide synthase (PKS) that is responsible for the biosynthesis of both 10-deoxymethynolide (1) and narbonolide (2), the parent 12- and 14-membered aglycone precursors of the macrolide antibiotics methymycin and picromycin, respectively. PIGS module 2 is a dehydratase (DH)-containing module that catalyzes the formation of the unsaturated triketide intermediate using malonyl-CoA as the chain extension substrate. Recombinant PIGS module 2+TE, with the PIGS thioesterase domain appended to the C-terminus to allow release of polyketide products, was expressed in Escherichia coli. Purified PIGS module 2+TE converted malonyl-CoA and 4, the N-acetylcysteamine thioester of (2S,3R)-2-methyl-3-hydroxypentanoic acid, to a 1:2 mixture of the triketide acid (4S,5R)-4-methyl-5-hydroxy-2-heptenoic acid (5) and (3S,4S,5R)-3,5-dihydroxy-4-methyl-n-heptanoic acid-delta-lactone (10) with a combined k(cat) of 0.6 min(-1). The triketide lactone 10 is formed by thioesterase-catalyzed cyclization of the corresponding D-3-hydroxyacyl-SACP intermediate, a reaction which competes with dehydration catalyzed by the dehydratase domain. PIGS module 2+TE showed a strong preference for the syn-diketide-SNAC 4, with a 20-fold greater k(cat)/K-m than the anti-(2S,3S)-diketide-SNAC 14, and a 40-fold advantage over the syn-(2R,3S)-diketide-SNAC 13. PIGS module 2(DH0)+TE, with an inactivated DH domain, produced exclusively 10, while three PIGS module 2(KR0)+TE mutants, with inactivated KR domains, produced exclusively or predominantly the unreduced triketide ketolactone, (4S,5R)3-oxo-4-methyl -5-hydroxy-n-heptanoic acid-delta-lactone (7). These studies establish for the first time the structure and stereochemistry of the intermediates of a polyketide chain elongation cycle catalyzed by a DH-containing module, while confirming the importance of key active site residues in both KR and DH domains.
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页码:17393 / 17404
页数:12
相关论文
共 61 条
[11]   Conserved amino acid residues correlating with ketoreductase stereospecificity in modular polyketicle synthases [J].
Caffrey, P .
CHEMBIOCHEM, 2003, 4 (07) :654-657
[12]   Precursor-directed biosynthesis: Biochemical basis of the remarkable selectivity of the erythromycin polyketide synthase toward unsaturated triketides [J].
Cane, DE ;
Kudo, F ;
Kinoshita, K ;
Khosla, C .
CHEMISTRY & BIOLOGY, 2002, 9 (01) :131-142
[13]   UNIFIED STEREOCHEMICAL MODEL OF POLYETHER ANTIBIOTIC-STRUCTURE AND BIOGENESIS [J].
CANE, DE ;
CELMER, WD ;
WESTLEY, JW .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (11) :3594-3600
[14]   MACROLIDE BIOSYNTHESIS .7. INCORPORATION OF POLYKETIDE CHAIN ELONGATION INTERMEDIATES INTO METHYMYCIN [J].
CANE, DE ;
LAMBALOT, RH ;
PRABHAKARAN, PC ;
OTT, WR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1993, 115 (02) :522-526
[15]  
CELMER W D, 1971, Pure and Applied Chemistry, V28, P413, DOI 10.1351/pac197128040413
[17]   AN UNUSUALLY LARGE MULTIFUNCTIONAL POLYPEPTIDE IN THE ERYTHROMYCIN-PRODUCING POLYKETIDE SYNTHASE OF SACCHAROPOLYSPORA-ERYTHRAEA [J].
CORTES, J ;
HAYDOCK, SF ;
ROBERTS, GA ;
BEVITT, DJ ;
LEADLAY, PF .
NATURE, 1990, 348 (6297) :176-178
[18]   ORGANIZATION OF THE ENZYMATIC DOMAINS IN THE MULTIFUNCTIONAL POLYKETIDE SYNTHASE INVOLVED IN ERYTHROMYCIN FORMATION IN SACCHAROPOLYSPORA-ERYTHRAEA [J].
DONADIO, S ;
KATZ, L .
GENE, 1992, 111 (01) :51-60
[19]   AN ERYTHROMYCIN ANALOG PRODUCED BY REPROGRAMMING OF POLYKETIDE SYNTHESIS [J].
DONADIO, S ;
MCALPINE, JB ;
SHELDON, PJ ;
JACKSON, M ;
KATZ, L .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (15) :7119-7123
[20]   MODULAR ORGANIZATION OF GENES REQUIRED FOR COMPLEX POLYKETIDE BIOSYNTHESIS [J].
DONADIO, S ;
STAVER, MJ ;
MCALPINE, JB ;
SWANSON, SJ ;
KATZ, L .
SCIENCE, 1991, 252 (5006) :675-679