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1.
Bioorg Med Chem Lett ; 27(15): 3499-3502, 2017 08 01.
Artigo em Inglês | MEDLINE | ID: mdl-28579330

RESUMO

Pradimicins are a group of antiviral and antifungal natural products from Actinomadura hibisca. Two putative O-methyltransferase genes, pdmF and pdmT, are present in the pradimicin biosynthetic gene cluster. However, there is only one methoxy group (11-OCH3) in pradimicins. Through heterologous expression and in vitro reactions with various substrates, PdmF was characterized as the C-11 O-methyltransferase with a relatively broad substrate specificity. To probe the role of PdmT in pradimicin biosynthesis, the corresponding gene was disrupted through homologous recombination, leading to the production of pradimicinone II. This enzyme was then expressed in Escherichia coli with an N-terminal His6 tag and purified by Ni-NTA chromatography. Reaction of pradimicinone II with PdmT generated 7-O-methylpradimicinone II, confirming that this enzyme is a C-7 O-methyltransferase. Characterization of PdmT suggests a novel pathway that leads to the "flip" of 7-OH to C-14 in pradimicin biosynthesis.


Assuntos
Actinomycetales/enzimologia , Actinomycetales/metabolismo , Antraciclinas/metabolismo , Antifúngicos/metabolismo , Antivirais/metabolismo , Metiltransferases/metabolismo , Actinomycetales/genética , Vias Biossintéticas , Metiltransferases/genética , Família Multigênica , Especificidade por Substrato
2.
Appl Microbiol Biotechnol ; 99(2): 693-701, 2015 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-25411046

RESUMO

Heterologous hosts are important platforms for engineering natural product biosynthesis. Escherichia coli is such a host widely used for expression of various biosynthetic enzymes. While numerous studies have been focused on optimizing the expression conditions for desired functional proteins, this work describes how supplement of exogenous nutrients into the fermentation broth influences the formation of natural products in E. coli. A type III polyketide synthase gene stts from Streptomyces toxytricini NRRL 15443 was heterogeneously expressed in E. coli BL21(DE3). This enzyme uses five units of malonyl-CoA to generate a polyketide 1,3,6,8-tetrahydroxynaphthalene, which can be spontaneously oxidized into a red compound flaviolin. In this work, we manipulated the fermentation broth of E. coli BL21(DE3)/pET28a-stts by supplying different nutrients including glucose and sodium pyruvate at different concentrations, from which six flaviolin derivatives 1-6 were produced. While addition of glucose yielded the production of 1-4, supplement of sodium pyruvate into the induced broth of E. coli BL21(DE3)/pET28a-stts resulted in the synthesis of 5 and 6, suggesting that different nutrients may enable E. coli to generate different metabolites. These products were purified and structurally characterized based on the spectral data, among which 2-6 are novel compounds. These molecules were formed through addition of different moieties such as acetone and indole to the flaviolin scaffold. The concentrations of glucose and sodium pyruvate and incubation time affect the product profiles. This work demonstrates that supplement of nutrients can link certain intracellular metabolites to the engineered biosynthetic pathway to yield new products. It provides a new approach to biosynthesizing novel molecules in the commonly used heterologous host E. coli.


Assuntos
Escherichia coli/metabolismo , Glucose/química , Policetídeos/metabolismo , Ácido Pirúvico/química , Aciltransferases/metabolismo , Vias Biossintéticas , Meios de Cultura/química , Escherichia coli/genética , Fermentação , Malonil Coenzima A/metabolismo , Naftóis/metabolismo , Naftoquinonas/química , Streptomyces/genética , Streptomyces/metabolismo
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