BACKGROUND: Heterologous expression of bacterial biosynthetic gene clusters is currently an indispensable tool for characterizing biosynthetic pathways. Development of an effective, general heterologous expression system that can be applied to bioprospecting from metagenomic DNA will enable the discovery of a wealth of new natural products. METHODOLOGY: We have developed a new Escherichia coli-based heterologous expression system for polyketide biosynthetic gene clusters. We have demonstrated the over-expression of the alternative sigma factor σ(54) directly and positively regulates heterologous expression of the oxytetracycline biosynthetic gene cluster in E. coli. Bioinformatics analysis indicates that σ(54) promoters are present in nearl...
The cryptic secondary metabolite biosynthetic gene clusters (BGCs) far outnumber currently known sec...
We report the formicapyridines which are structurally and biosynthetically related to the pentacycli...
Genetic manipulation of biosynthetic pathways is a useful method for producing analogs of complex bi...
Background: Heterologous expression of bacterial biosynthetic gene clusters is currently an indispen...
Heterologous expression of bacterial biosynthetic gene clusters is currently an indispensable tool f...
Bacterial polyketides possess an enormous range of chemical diversity and biological function. Many...
Background: Technological advances in synthetic biology, systems biology, and metabolic engineering ...
Synthetic genetic sensors and circuits enable programmable control over timing and conditions of gen...
Technological advances in synthetic biology, systems biology, and metabolic engineering have boosted...
Cyanobacteria represent an underexploited source of bioactive natural products of interest to the ph...
Polyketide natural products are among the most important microbial metabolites in human medicine and...
Polyketides are important bioactive natural products biosynthesized by bacteria, fungi, and plants. ...
Background: At the beginning of the transcription process, the RNA polymerase (RNAP) core enzyme req...
Bacterial aromatic polyketides, exemplified by anthracyclines, angucyclines, tetracyclines, and pent...
Microorganisms are prolific producers of natural product small molecules, many of which have been de...
The cryptic secondary metabolite biosynthetic gene clusters (BGCs) far outnumber currently known sec...
We report the formicapyridines which are structurally and biosynthetically related to the pentacycli...
Genetic manipulation of biosynthetic pathways is a useful method for producing analogs of complex bi...
Background: Heterologous expression of bacterial biosynthetic gene clusters is currently an indispen...
Heterologous expression of bacterial biosynthetic gene clusters is currently an indispensable tool f...
Bacterial polyketides possess an enormous range of chemical diversity and biological function. Many...
Background: Technological advances in synthetic biology, systems biology, and metabolic engineering ...
Synthetic genetic sensors and circuits enable programmable control over timing and conditions of gen...
Technological advances in synthetic biology, systems biology, and metabolic engineering have boosted...
Cyanobacteria represent an underexploited source of bioactive natural products of interest to the ph...
Polyketide natural products are among the most important microbial metabolites in human medicine and...
Polyketides are important bioactive natural products biosynthesized by bacteria, fungi, and plants. ...
Background: At the beginning of the transcription process, the RNA polymerase (RNAP) core enzyme req...
Bacterial aromatic polyketides, exemplified by anthracyclines, angucyclines, tetracyclines, and pent...
Microorganisms are prolific producers of natural product small molecules, many of which have been de...
The cryptic secondary metabolite biosynthetic gene clusters (BGCs) far outnumber currently known sec...
We report the formicapyridines which are structurally and biosynthetically related to the pentacycli...
Genetic manipulation of biosynthetic pathways is a useful method for producing analogs of complex bi...