keyword
https://read.qxmd.com/read/24161212/in-vitro-reconstitution-and-analysis-of-the-6-deoxyerythronolide-b-synthase
#21
JOURNAL ARTICLE
Brian Lowry, Thomas Robbins, Chih-Hisang Weng, Robert V O'Brien, David E Cane, Chaitan Khosla
Notwithstanding an extensive literature on assembly line polyketide synthases such as the 6-deoxyerythronolide B synthase (DEBS), a complete naturally occurring synthase has never been reconstituted in vitro from purified protein components. Here, we describe the fully reconstituted DEBS and quantitatively characterize some of the properties of the assembled system that have never been explored previously. The maximum turnover rate of the complete hexamodular system is 1.1 min(-1), comparable to the turnover rate of a truncated trimodular derivative (2...
November 13, 2013: Journal of the American Chemical Society
https://read.qxmd.com/read/23692164/broad-substrate-specificity-of-the-loading-didomain-of-the-lipomycin-polyketide-synthase
#22
JOURNAL ARTICLE
Satoshi Yuzawa, Clara H Eng, Leonard Katz, Jay D Keasling
LipPks1, a polyketide synthase subunit of the lipomycin synthase, is believed to catalyze the polyketide chain initiation reaction using isobutyryl-CoA as a substrate, followed by an elongation reaction with methylmalonyl-CoA to start the biosynthesis of antibiotic α-lipomycin in Streptomyces aureofaciens Tü117. Recombinant LipPks1, containing the thioesterase domain from the 6-deoxyerythronolide B synthase, was produced in Escherichia coli, and its substrate specificity was investigated in vitro. Surprisingly, several different acyl-CoAs, including isobutyryl-CoA, were accepted as the starter substrates, while no product was observed with acetyl-CoA...
June 4, 2013: Biochemistry
https://read.qxmd.com/read/23116287/functional-modular-dissection-of-debs1-te-changes-triketide-lactone-ratios-and-provides-insight-into-acyl-group-loading-hydrolysis-and-acp-transfer
#23
JOURNAL ARTICLE
John Yan, Christopher Hazzard, Shilah A Bonnett, Kevin A Reynolds
The DEBS1-TE fusion protein is comprised of the loading module, the first two extension modules, and the terminal TE domain of the Saccharopolyspora erythraea 6-deoxyerythronolide B synthase. DEBS1-TE produces triketide lactones that differ on the basis of the starter unit selected by the loading module. Typical fermentations with plasmid-based expression of DEBS1-TE produce a 6:1 ratio of propionate to isobutyrate-derived triketide lactones. Functional dissection of the loading module from the remainder of DEBS1-TE results in 50% lower titers of triketide lactone and a dramatic shift in the production to a 1:4 ratio of propionate to isobutyrate-derived products...
November 20, 2012: Biochemistry
https://read.qxmd.com/read/22519860/6-deoxyerythronolide-b-synthase-thioesterase-catalyzed-macrocyclization-is-highly-stereoselective
#24
JOURNAL ARTICLE
Atahualpa Pinto, Meng Wang, Mark Horsman, Christopher N Boddy
Macrocyclic polyketide natural products are an indispensable source of therapeutic agents. The final stage of their biosynthesis, macrocyclization, is catalyzed regio- and stereoselectively by a thioesterase. A panel of substrates were synthesized to test their specificity for macrocyclization by the erythromycin polyketide synthase TE (DEBS TE) in vitro. It was shown that DEBS TE is highly stereospecific, successfully macrocyclizing a 14-member ring substrate with an R configured O-nucleophile, and highly regioselective, generating exclusively the 14-member lactone over the 12-member lactone...
May 4, 2012: Organic Letters
https://read.qxmd.com/read/22509729/role-of-a-conserved-arginine-residue-in-linkers-between-the-ketosynthase-and-acyltransferase-domains-of-multimodular-polyketide-synthases
#25
JOURNAL ARTICLE
Satoshi Yuzawa, Shiven Kapur, David E Cane, Chaitan Khosla
The role of interdomain linkers in modular polyketide synthases is poorly understood. Analysis of the 6-deoxyerythronolide B synthase (DEBS) has yielded a model in which chain elongation is governed by interactions between the acyl carrier protein domain and the ketosynthase domain plus an adjacent linker. Alanine scanning mutagenesis of the conserved residues of this linker in DEBS module 3 led to the identification of the R513A mutant with a markedly reduced rate of chain elongation. Limited proteolysis supported a structural role for this Arg...
May 8, 2012: Biochemistry
https://read.qxmd.com/read/22371562/reprogramming-a-module-of-the-6-deoxyerythronolide-b-synthase-for-iterative-chain-elongation
#26
JOURNAL ARTICLE
Shiven Kapur, Brian Lowry, Satoshi Yuzawa, Sanketha Kenthirapalan, Alice Y Chen, David E Cane, Chaitan Khosla
Multimodular polyketide synthases (PKSs) have an assembly line architecture in which a set of protein domains, known as a module, participates in one round of polyketide chain elongation and associated chemical modifications, after which the growing chain is translocated to the next PKS module. The ability to rationally reprogram these assembly lines to enable efficient synthesis of new polyketide antibiotics has been a long-standing goal in natural products biosynthesis. We have identified a ratchet mechanism that can explain the observed unidirectional translocation of the growing polyketide chain along the 6-deoxyerythronolide B synthase...
March 13, 2012: Proceedings of the National Academy of Sciences of the United States of America
https://read.qxmd.com/read/21570406/structural-and-functional-analysis-of-c2-type-ketoreductases-from-modular-polyketide-synthases
#27
JOURNAL ARTICLE
Jianting Zheng, Adrian T Keatinge-Clay
The process by which α-stereocenters of polyketide intermediates are set by modular polyketide synthases (PKSs) when condensation is not immediately followed by reduction is mysterious. However, the reductase-incompetent ketoreductase (KR) from the third module of 6-deoxyerythronolide B synthase has been proposed to operate as a racemase, aiding in the epimerization process that reverses the orientation of the α-methyl group of the polyketide intermediate generated by the ketosynthase to the configuration observed in the 6-deoxyerythronolide B final product...
July 1, 2011: Journal of Molecular Biology
https://read.qxmd.com/read/21563224/probing-the-interactions-of-an-acyl-carrier-protein-domain-from-the-6-deoxyerythronolide-b-synthase
#28
JOURNAL ARTICLE
Louise K Charkoudian, Corey W Liu, Stefania Capone, Shiven Kapur, David E Cane, Antonio Togni, Dieter Seebach, Chaitan Khosla
The assembly-line architecture of polyketide synthases (PKSs) provides an opportunity to rationally reprogram polyketide biosynthetic pathways to produce novel antibiotics. A fundamental challenge toward this goal is to identify the factors that control the unidirectional channeling of reactive biosynthetic intermediates through these enzymatic assembly lines. Within the catalytic cycle of every PKS module, the acyl carrier protein (ACP) first collaborates with the ketosynthase (KS) domain of the paired subunit in its own homodimeric module so as to elongate the growing polyketide chain and then with the KS domain of the next module to translocate the newly elongated polyketide chain...
July 2011: Protein Science
https://read.qxmd.com/read/21338915/enzymatic-extender-unit-generation-for-in-vitro-polyketide-synthase-reactions-structural-and-functional-showcasing-of-streptomyces-coelicolor-matb
#29
JOURNAL ARTICLE
Amanda J Hughes, Adrian Keatinge-Clay
In vitro experiments with modular polyketide synthases (PKSs) are often limited by the availability of polyketide extender units. To determine the polyketide extender units that can be biocatalytically accessed via promiscuous malonyl-CoA ligases, structural and functional studies were conducted on Streptomyces coelicolor MatB. We demonstrate that this adenylate-forming enzyme is capable of producing most CoA-linked polyketide extender units as well as pantetheine- and N-acetylcysteamine-linked analogs useful for in vitro PKS studies...
February 25, 2011: Chemistry & Biology
https://read.qxmd.com/read/21337322/multi-factorial-engineering-of-heterologous-polyketide-production-in-escherichia-coli-reveals-complex-pathway-interactions
#30
JOURNAL ARTICLE
Brett A Boghigian, Haoran Zhang, Blaine A Pfeifer
Polyketides represent a significant fraction of all natural products. Many possess pharmacological activity which makes them attractive drug candidates. The production of the parent macrocyclic aglycones is catalyzed by multi-modular polyketide synthases utilizing short-chain acyl-CoA monomers. When producing polyketides through heterologous hosts, one must not only functionally express the synthase itself, but activate the machinery used to generate the required substrate acyl-CoA's. As a result, metabolic engineering of these pathways is necessary for high-level production of heterologous polyketides...
June 2011: Biotechnology and Bioengineering
https://read.qxmd.com/read/21127271/molecular-recognition-between-ketosynthase-and-acyl-carrier-protein-domains-of-the-6-deoxyerythronolide-b-synthase
#31
JOURNAL ARTICLE
Shiven Kapur, Alice Y Chen, David E Cane, Chaitan Khosla
Every polyketide synthase module has an acyl carrier protein (ACP) and a ketosynthase (KS) domain that collaborate to catalyze chain elongation. The same ACP then engages the KS domain of the next module to facilitate chain transfer. Understanding the mechanism for this orderly progress of the growing polyketide chain represents a fundamental challenge in assembly line enzymology. Using both experimental and computational approaches, the molecular basis for KS-ACP interactions in the 6-deoxyerythronolide B synthase has been decoded...
December 21, 2010: Proceedings of the National Academy of Sciences of the United States of America
https://read.qxmd.com/read/20925342/stereospecificity-of-the-dehydratase-domain-of-the-erythromycin-polyketide-synthase
#32
JOURNAL ARTICLE
Chiara R Valenzano, Young-Ok You, Ashish Garg, Adrian Keatinge-Clay, Chaitan Khosla, David E Cane
The dehydratase (DH) domain of module 4 of the 6-deoxyerythronolide B synthase (DEBS) has been shown to catalyze an exclusive syn elimination/syn addition of water. Incubation of recombinant DH4 with chemoenzymatically prepared anti-(2R,3R)-2-methyl-3-hydroxypentanoyl-ACP (2a-ACP) gave the dehydration product 3-ACP. Similarly, incubation of DH4 with synthetic 3-ACP resulted in the reverse enzyme-catalyzed hydration reaction, giving an ∼3:1 equilbrium mixture of 2a-ACP and 3-ACP. Incubation of a mixture of propionyl-SNAC (4), methylmalonyl-CoA, and NADPH with the DEBS β-ketoacyl synthase-acyl transferase [KS6][AT6] didomain, DEBS ACP6, and the ketoreductase domain from tylactone synthase module 1 (TYLS KR1) generated in situ anti-2a-ACP that underwent DH4-catalyzed syn dehydration to give 3-ACP...
October 27, 2010: Journal of the American Chemical Society
https://read.qxmd.com/read/20925339/mechanism-and-stereospecificity-of-a-fully-saturating-polyketide-synthase-module-nanchangmycin-synthase-module-2-and-its-dehydratase-domain
#33
JOURNAL ARTICLE
Xun Guo, Tiangang Liu, Chiara R Valenzano, Zixin Deng, David E Cane
Recombinant nanchangmycin synthase module 2 (NANS module 2), with the thioesterase domain from the 6-deoxyerythronolide B synthase (DEBS TE) appended to the C-terminus, was cloned and expressed in Escherichia coli. Incubation of NANS module 2+TE with (±)-2-methyl-3-keto-butyryl-N-acetylcysteamine thioester (1), the SNAC analog of the natural ACP-bound substrate, with methylmalonyl-CoA (MM-CoA) in the absence of NADPH gave 3,5,6-trimethyl-4-hydroxypyrone (2), identified by direct comparison with synthetic 2 by radio-TLC-phosphorimaging and LC-ESI(+)-MS-MS...
October 27, 2010: Journal of the American Chemical Society
https://read.qxmd.com/read/20666435/mutagenesis-of-a-modular-polyketide-synthase-enoylreductase-domain-reveals-insights-into-catalysis-and-stereospecificity
#34
JOURNAL ARTICLE
David H Kwan, Peter F Leadlay
Modular type I polyketide synthases (PKSs) such as the 6-deoxyerythronolide B synthase (DEBS) or the rapamycin synthase (RAPS) biosynthesize their polyketide products in a fashion similar to fatty acid biosynthesis. Each module of these enzymes consists of multiple catalytic domains. The constituent enoylreductase (ER) domain of a given module stereospecifically reduces an enzyme-bound 2-enoyl intermediate. In a recombinant model PKS containing an ER domain derived from module 13 of RAPS, we have previously used site-specific mutagenesis to identify a key active site residue that influences the stereochemistry of enoylreduction...
September 17, 2010: ACS Chemical Biology
https://read.qxmd.com/read/20135665/synthetic-chain-terminators-off-load-intermediates-from-a-type-i-polyketide-synthase
#35
JOURNAL ARTICLE
Manuela Tosin, Lorena Betancor, Elaine Stephens, W M Ariel Li, Jonathan B Spencer, Peter F Leadlay
Modular biocatalysis is responsible for the generation of countless bioactive products and its mining remains a major focus for drug discovery purposes. One of the enduring hurdles is the isolation of biosynthetic intermediates in a readily-analysed form. We prepared a series of nonhydrolysable pantetheine and N-acetyl cysteamine mimics of the natural (methyl)malonyl extender units recruited for polyketide formation. Using these analogues as competitive substrates, we were able to trap and off-load diketide and triketide species directly from an in vitro reconstituted type I polyketide synthase, the 6-deoxyerythronolide B synthase 3 (DEBS3)...
March 1, 2010: Chembiochem: a European Journal of Chemical Biology
https://read.qxmd.com/read/20132826/structure-of-the-human-fatty-acid-synthase-ks-mat-didomain-as-a-framework-for-inhibitor-design
#36
JOURNAL ARTICLE
Günter Pappenberger, Jörg Benz, Bernard Gsell, Michael Hennig, Armin Ruf, Martine Stihle, Ralf Thoma, Markus G Rudolph
The human fatty acid synthase (FAS) is a key enzyme in the metabolism of fatty acids and a target for antineoplastic and antiobesity drug development. Due to its size and flexibility, structural studies of mammalian FAS have been limited to individual domains or intermediate-resolution studies of the complete porcine FAS. We describe the high-resolution crystal structure of a large part of human FAS that encompasses the tandem domain of beta-ketoacyl synthase (KS) connected by a linker domain to the malonyltransferase (MAT) domain...
March 26, 2010: Journal of Molecular Biology
https://read.qxmd.com/read/19921859/protein-protein-recognition-between-acyltransferases-and-acyl-carrier-proteins-in-multimodular-polyketide-synthases
#37
JOURNAL ARTICLE
Fong T Wong, Alice Y Chen, David E Cane, Chaitan Khosla
Acyltransferase (AT) domains of multimodular polyketide synthases are the primary gatekeepers for stepwise incorporation of building blocks into a growing polyketide chain. Each AT domain has two substrates, an alpha-carboxylated CoA thioester (e.g., malonyl-CoA or methylmalonyl-CoA) and an acyl carrier protein (ACP). Whereas the acyl-CoA specificity of AT domains has been extensively investigated, little is known about their ACP specificity. Guided by recent high-resolution structural insights, we have systematically probed the protein-protein interactions between AT domains, ACP domains, and the linkers that flank AT domains...
January 12, 2010: Biochemistry
https://read.qxmd.com/read/19810731/synthesis-and-biochemical-analysis-of-complex-chain-elongation-intermediates-for-interrogation-of-molecular-specificity-in-the-erythromycin-and-pikromycin-polyketide-synthases
#38
JOURNAL ARTICLE
Jonathan D Mortison, Jeffrey D Kittendorf, David H Sherman
The 6-deoxyerythronolide B synthase (DEBS) and pikromycin (Pik) polyketide synthase (PKS) are unique multifunctional enzyme systems that are responsible for the biosynthesis of the erythromycin and pikromycin 14-membered ring aglycones, respectively. Together, these natural product biosynthetic systems provide excellent platforms to examine the fundamental structural and catalytic elements that govern polyketide assembly, processing, and macrocyclization. In these studies, the native pentaketide intermediate for DEBS was synthesized and employed for in vitro chemoenzymatic synthesis of macrolactone products in engineered monomodules Ery5, Ery5-TE, and Ery6...
November 4, 2009: Journal of the American Chemical Society
https://read.qxmd.com/read/19711990/structures-and-mechanisms-of-polyketide-synthases
#39
REVIEW
Chaitan Khosla
Nearly a quarter-century ago, the advent of molecular genetic tools in the field of natural product biosynthesis led to the remarkable revelation that the genes responsible for the biosynthesis, regulation, and self-resistance of complex polyketide antibiotics were clustered in the genomes of the bacteria that produced these compounds. This in turn facilitated rapid cloning and sequencing of genes encoding a number of polyketide synthases (PKSs). By now, it is abundantly clear that, notwithstanding extraordinary architectural and biocatalytic diversity, all PKSs are evolutionarily related enzyme assemblies...
September 4, 2009: Journal of Organic Chemistry
https://read.qxmd.com/read/19634176/efficient-experimental-design-and-micro-scale-medium-enhancement-of-6-deoxyerythronolide-b-production-through-escherichia-coli
#40
JOURNAL ARTICLE
Michael Pistorino, Blaine A Pfeifer
The recent use of heterologous hosts to produce natural products has shown significant potential, although limitations still exist regarding optimal production titers. In this study, we utilize micro-scale cultures and well-defined screening methods to identify key medium components that influence the heterologous production of the complex polyketide 6-deoxyerythronolide B (6dEB) through E. coli. It was determined that tryptone had a significant effect on 6dEB production and could supplement substrate requirements and improve recombinant protein levels of the essential deoxyerythronolide B synthase (DEBS) which catalyze 6dEB conversion...
September 2009: Biotechnology Progress
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