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1.
Microbiology (Reading) ; 154(Pt 9): 2872-2880, 2008 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-18757821

RESUMO

Genetic engineering has been applied to reprogramme non-ribosomal peptide synthetases (NRPSs) to produce novel antibiotics, but little is known about what determines the efficiency of production. We explored module exchanges at nucleotide sequences encoding interpeptide linkers in dptD, a gene encoding a di-modular NRPS subunit that incorporates 3-methylglutamic acid (3mGlu(12)) and kynurenine (Kyn(13)) into daptomycin. Mutations causing amino acid substitutions, deletions or insertions in the inter-module linker had no negative effects on lipopeptide yields. Hybrid DptD subunits were generated by fusing the 3mGlu(12) module to terminal modules from calcium-dependent antibiotic (CDA) or A54145 NRPSs, and recombinants produced daptomycin analogues with Trp(13) or Ile(13) at high efficiencies. A recombinant expressing DptD with a hybrid Kyn(13) module containing a di-domain from a d-Asn module caused the production of a new daptomycin analogue containing Asn(13).


Assuntos
Proteínas de Bactérias/metabolismo , Daptomicina/biossíntese , Peptídeo Sintases/metabolismo , Proteínas Recombinantes de Fusão/metabolismo , Streptomyces/enzimologia , Motivos de Aminoácidos , Sequência de Aminoácidos , Substituição de Aminoácidos , Antibacterianos/biossíntese , Proteínas de Bactérias/genética , Sequência de Bases , Daptomicina/análogos & derivados , Fermentação , Dados de Sequência Molecular , Peptídeo Sintases/genética , Plasmídeos , Engenharia de Proteínas , Proteínas Recombinantes de Fusão/genética , Deleção de Sequência , Streptomyces/genética , Streptomyces/metabolismo
2.
Eur J Biochem ; 270(22): 4555-63, 2003 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-14622284

RESUMO

Microorganisms produce a large number of pharmacologically and biotechnologically important peptides by using nonribosomal peptide synthetases (NRPSs). Due to their modular arrangement and their domain organization NRPSs are particularly suitable for engineering recombinant proteins for the production of novel peptides with interesting properties. In order to compare different strategies of domain assembling and module fusions we focused on the selective construction of a set of peptide synthetases that catalyze the formation of the dipeptide alpha-l-aspartyl-l-phenylalanine (Asp-Phe), the precursor of the high-intensity sweetener alpha-l-aspartyl-l-phenylalanine methyl ester (aspartame). The de novo design of six different Asp-Phe synthetases was achieved by fusion of Asp and Phe activating modules comprising adenylation, peptidyl carrier protein and condensation domains. Product release was ensured by a C-terminally fused thioesterase domains and quantified by HPLC/MS analysis. Significant differences of enzyme activity caused by the fusion strategies were observed. Two forms of the Asp-Phe dipeptide were detected, the expected alpha-Asp-Phe and the by-product beta-Asp-Phe. Dependent on the turnover rates ranging from 0.01-0.7 min-1, the amount of alpha-Asp-Phe was between 75 and 100% of overall product, indicating a direct correlation between the turnover numbers and the ratios of alpha-Asp-Phe to beta-Asp-Phe. Taken together these results provide useful guidelines for the rational construction of hybrid peptide synthetases.


Assuntos
Aspartame/metabolismo , Dipeptídeos/biossíntese , Peptídeo Sintases/metabolismo , Engenharia de Proteínas , Proteínas Recombinantes/metabolismo , Ácido Aspártico/metabolismo , Catálise , Cromatografia Líquida de Alta Pressão , Escherichia coli , Espectrometria de Massas , Peptídeo Sintases/química , Peptídeo Sintases/genética , Fenilalanina/metabolismo , Proteínas Recombinantes/química , Proteínas Recombinantes/genética , Especificidade por Substrato
3.
FEMS Microbiol Lett ; 216(2): 185-91, 2002 Nov 05.
Artigo em Inglês | MEDLINE | ID: mdl-12435501

RESUMO

A major obstacle in investigating the biosynthesis of pharmacologically important peptide antibiotics is the heterologous expression of the giant biosynthetic genes. Recently, the genetically engineered strain Bacillus subtilis KE30 has been reported as an excellent surrogate host for the heterologous expression of an entire nonribosomal peptide synthetase (NRPS) gene cluster. In this study, we expand the applicability of this strain, by the development of four Escherichia coli/B. subtilis shuttle expression vectors. Comparative overproduction of hybrid NRPS proteins derived from both organisms revealed a significant beneficial effect of overproducing proteins in B. subtilis KE30 as underlined by the production of stable nondegradative proteins, as well as the formation of active phosphopantetheinylated holo-proteins.


Assuntos
Bacillus subtilis/genética , Escherichia coli/genética , Vetores Genéticos/genética , Peptídeo Sintases/biossíntese , Antibacterianos/biossíntese , Bacillus subtilis/enzimologia , Bacteriófagos/genética , Expressão Gênica , Genes Bacterianos , Engenharia Genética , Genoma Bacteriano , Peptídeo Sintases/genética , Peptídeos , Regiões Promotoras Genéticas , Processamento de Proteína Pós-Traducional , Proteínas Recombinantes/análise , Proteínas Recombinantes/biossíntese , Proteínas Recombinantes/genética , Transformação Genética
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