Alteration of the substrate specificity of a modular polyketide synthase acyltransferase domain through site-specific mutations

被引:157
作者
Reeves, CD [1 ]
Murli, S [1 ]
Ashley, GW [1 ]
Piagentini, M [1 ]
Hutchinson, CR [1 ]
McDaniel, R [1 ]
机构
[1] Kosan Biosci Inc, Hayward, CA 94545 USA
关键词
D O I
10.1021/bi015864r
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cassette replacement of acyltransferase (AT) domains in 6-deoxyerythronolide B synthase (DEBS) with heterologous AT domains with different substrate specificities usually yields the predicted polyketide analogues. As reported here, however, several AT replacements in module 4 of DEBS failed to produce detectable polyketide under standard conditions, suggesting that module 4 is sensitive to perturbation of the protein structure when the AT is replaced. Alignments between different modular polyketide synthase AT domains and the Escherichia coli fatty acid synthase transacylase crystal structure were used to select motifs within the AT domain of module 4 to re-engineer its substrate selectivity and minimize potential alterations to protein folding. Three distinct primary regions of AT4 believed to confer specificity for methylmalonyl-CoA were mutated into the sequence seen in malonyl-CoA-specific domains. Each individual mutation as well as the three in combination resulted in functional DEBSs that produced mixtures of the natural polyketide, 6-deoxyerythronolide B, and the desired novel analogue, 6-desniethyl-6-deoxyerythronolide B. Production of the latter compound indicates that the identified sequence motifs do contribute to AT specificity and that DEBS can process a polyketide chain incorporating a malonate unit at module 4. This is the first example in which the extender unit specificity of a PKS module has been altered by site-specific mutation and provides a useful alternate method for engineering AT specificity in the combinatorial biosynthesis of polyketides.
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页码:15464 / 15470
页数:7
相关论文
共 29 条
[1]  
BREITMAIER E, 1987, C 13 NMR SPECTROSCOP, P186
[2]   Dissecting and exploiting intermodular communication in polyketide synthases [J].
Gokhale, RS ;
Tsuji, SY ;
Cane, DE ;
Khosla, C .
SCIENCE, 1999, 284 (5413) :482-485
[3]   DIVERGENT SEQUENCE MOTIFS CORRELATED WITH THE SUBSTRATE-SPECIFICITY OF (METHYL)MALONYL-COA-ACYL CARRIER PROTEIN TRANSACYLASE DOMAINS IN MODULAR POLYKETIDE SYNTHESES [J].
HAYDOCK, SF ;
APARICIO, JF ;
MOLNAR, I ;
SCHWECKE, T ;
KHAW, LE ;
KONIG, A ;
MARSDEN, AFA ;
GALLOWAY, IS ;
STAUNTON, J ;
LEADLAY, PF .
FEBS LETTERS, 1995, 374 (02) :246-248
[4]   Genetic contributions to understanding polyketide synthases [J].
Hopwood, DA .
CHEMICAL REVIEWS, 1997, 97 (07) :2465-2497
[5]   Organization of the biosynthetic gene cluster for the polyketide anthelmintic macrolide avermectin in Streptomyces avermitilis [J].
Ikeda, H ;
Nonomiya, T ;
Usami, M ;
Ohta, T ;
Ömura, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (17) :9509-9514
[6]   Identification and characterization of the niddamycin polyketide synthase genes from Streptomyces caelestis [J].
Kakavas, SJ ;
Katz, L ;
Stassi, D .
JOURNAL OF BACTERIOLOGY, 1997, 179 (23) :7515-7522
[7]   ENGINEERED BIOSYNTHESIS OF A COMPLETE MACROLACTONE IN A HETEROLOGOUS HOST [J].
KAO, CM ;
KATZ, L ;
KHOSLA, C .
SCIENCE, 1994, 265 (5171) :509-512
[8]   MANIPULATION OF MACROLIDE RING SIZE BY DIRECTED MUTAGENESIS OF A MODULAR POLYKETIDE SYNTHASE [J].
KAO, CM ;
LUO, GL ;
KATZ, L ;
CANE, DE ;
KHOSLA, C .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1995, 117 (35) :9105-9106
[9]   Production of a novel polyketide through the construction of a hybrid polyketide synthase [J].
Kuhstoss, S ;
Huber, M ;
Turner, JR ;
Paschal, JW ;
Rao, RN .
GENE, 1996, 183 (1-2) :231-236
[10]   Dissecting the role of acyltransferase domains of modular polyketide synthases in the choice and stereochemical fate of extender units [J].
Lau, J ;
Fu, H ;
Cane, DE ;
Khosla, C .
BIOCHEMISTRY, 1999, 38 (05) :1643-1651