Genetic engineering of macrolide biosynthesis: past advances, current state, and future prospects
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Summary
This review highlights the current state of novel macrolide production with a focus on the genetic engineering of PKS and post-PKS tailoring genes, which provides attractive alternatives for the production of diverse non-natural compounds.
- Type
- review
- Published
- 2010-02-01
- Cited by
- 75
- References
- 106
- OpenAlex
- https://openalex.org/W1974112253
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25841
Keywords
Polyketide, Metabolic engineering, Biology, Gene, Biosynthesis
References
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- The polyketide metabolites
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- Identification of an isozymic form of acetyl-CoA carboxylase.
- Parallel pathways for oxidation of 14‐membered polyketide macrolactones in Saccharopolyspora erythraea
- Biosynthesis and attachment of novel bacterial polyketide synthase starter units.
- Engineered biosynthesis of a complete macrolactone in a heterologous host.
- The Structural Basis for Substrate Anchoring, Active Site Selectivity, and Product Formation by P450 PikC from Streptomyces venezuelae*
- A model of structure and catalysis for ketoreductase domains in modular polyketide synthases.
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- Low pH-induced membrane fatty acid alterations in oral bacteria.
- Generation of multiple bioactive macrolides by hybrid modular polyketide synthases in Streptomyces venezuelae.
- Engineered synthesis of 7-oxo- and 15-deoxy-15-oxo-amphotericins: insights into structure-activity relationships in polyene antibiotics.
- Engineering of the methylmalonyl-CoA metabolite node of Saccharopolyspora erythraea for increased erythromycin production.
- Enhanced FK506 production in Streptomyces clavuligerus CKD1119 by engineering the supply of methylmalonyl-CoA precursor
- Alteration of the substrate specificity of a modular polyketide synthase acyltransferase domain through site-specific mutations.
Cited by
- Enabling techniques in the search for new antibiotics: Combinatorial biosynthesis of sugar‐containing antibiotics
- Essential role of genetics in the advancement of biotechnology.
- THE DISCOVERY AND STUDY OF FLUVIRUCIN B1 POLYKETIDE SYNTHASE
- Developing Streptomyces venezuelae as a cell factory for the production of small molecules used in drug discovery
- Knocking out of tailoring genes eryK and eryG in an industrial erythromycin‐producing strain of Saccharopolyspora erythraea leading to overproduction of erythromycin B, C and D at different conversion ratios
- Chemoenzymatic Synthesis of Glycosylated Macrolactam Analogues of the Macrolide Antibiotic YC‐17
- Bacterial l-leucine catabolism as a source of secondary metabolites
- Structural Basis of Substrate Specificity and Regiochemistry in the MycF/TylF Family of Sugar O-Methyltransferases
- Production of a hybrid 16-membered macrolide antibiotic by genetic engineering of Micromonospora sp. TPMA0041
- Microbial natural products: molecular blueprints for antitumor drugs
- Streptomyces nodosus Host Strains Optimized for Polyene Glycosylation Engineering
- 2-Deoxystreptamine-containing aminoglycoside antibiotics: recent advances in the characterization and manipulation of their biosynthetic pathways.
- Heterologous Production of 4-O-Demethylbarbamide, a Marine Cyanobacterial Natural Product
- A Comprehensive Review of Aliphatic Hydrocarbon Biodegradation by Bacteria
- A new mycinosyl rosamicin derivative produced by an engineered Micromonospora rosaria mutant with a cytochrome P450 gene disruption introducing the d-mycinose biosynthetic gene
- Characterization and engineering of the ethylmalonyl-CoA pathway towards the improved heterologous production of polyketides in Streptomyces venezuelae
- Blastocystis Is Associated with Decrease of Fecal Microbiota Protective Bacteria: Comparative Analysis between Patients with Irritable Bowel Syndrome and Control Subjects
- Engineered biosynthesis of glycosylated derivatives of narbomycin and evaluation of their antibacterial activities
- Importance of microbial natural products and the need to revitalize their discovery
- A combined approach of classical mutagenesis and rational metabolic engineering improves rapamycin biosynthesis and provides insights into methylmalonyl-CoA precursor supply pathway in Streptomyces hygroscopicus ATCC 29253
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