Summary Salinomycin, an FDA‐approved polyketide drug, was recently identified as a promising anti‐tumour and anti‐viral lead compound. It is produced by Streptomyces albus, and the biosynthetic gene cluster (sal) spans over 100 kb. The genetic manipulation of large polyketide gene clusters is challenging, and approaches delivering reliable efficiency and accuracy are desired. Herein, a delicate strategy to enhance salinomycin production was devised and evaluated. We reconstructed a minimized sal gene cluster (mini‐cluster) on pSET152 including key genes responsible for tailoring modification, antibiotic resistance, positive regulation and precursor supply. These genes were overexpressed under the control of constitutive promoter PkasO* or P...
Glaser L, Kuhl M, Stegmuller J, et al. Superior production of heavy pamamycin derivatives using a bk...
Background Pamamycins are a family of highly bioactive macrodiolide polyketides produced by Streptom...
There is a constant need for new and improved drugs to combat infectious diseases, cancer, and other...
New small-molecule drugs are needed, both to address existing disease and to combat the rise of anti...
Linear plus linear homologous recombination-mediated recombineering (LLHR) is ideal for obtaining na...
Precise cloning and tandem integration of large polyketide biosynthetic gene cluster using Streptomy...
Abstract Background Genome sequencing revealed that Streptomyces sp. can dedicate up to ~ 10% of the...
The discovery of new antibiotics is one of the most urgent tasks facing scientists today. The escala...
The purpose of this study is to explore the function of MarR-family regulator slnO. In addition, the...
The issues in new antibiotic discovery are pressing, because the frequent re-discovery of antibiotic...
The issues in new antibiotic discovery are pressing, because the frequent re-discovery of antibiotic...
Natural products remain a valuable source of drug leads in the 21st Century. Revival of actinomycete...
Streptomyces are a genus of Actinobacteria capable of producing structurally diverse natural product...
BACKGROUND: Heterologous expression of secondary metabolite gene clusters is used to achieve incr...
The anti-coccidiosis agent salinomycin is a polyether antibiotic produced by Streptomyces albus BK3-...
Glaser L, Kuhl M, Stegmuller J, et al. Superior production of heavy pamamycin derivatives using a bk...
Background Pamamycins are a family of highly bioactive macrodiolide polyketides produced by Streptom...
There is a constant need for new and improved drugs to combat infectious diseases, cancer, and other...
New small-molecule drugs are needed, both to address existing disease and to combat the rise of anti...
Linear plus linear homologous recombination-mediated recombineering (LLHR) is ideal for obtaining na...
Precise cloning and tandem integration of large polyketide biosynthetic gene cluster using Streptomy...
Abstract Background Genome sequencing revealed that Streptomyces sp. can dedicate up to ~ 10% of the...
The discovery of new antibiotics is one of the most urgent tasks facing scientists today. The escala...
The purpose of this study is to explore the function of MarR-family regulator slnO. In addition, the...
The issues in new antibiotic discovery are pressing, because the frequent re-discovery of antibiotic...
The issues in new antibiotic discovery are pressing, because the frequent re-discovery of antibiotic...
Natural products remain a valuable source of drug leads in the 21st Century. Revival of actinomycete...
Streptomyces are a genus of Actinobacteria capable of producing structurally diverse natural product...
BACKGROUND: Heterologous expression of secondary metabolite gene clusters is used to achieve incr...
The anti-coccidiosis agent salinomycin is a polyether antibiotic produced by Streptomyces albus BK3-...
Glaser L, Kuhl M, Stegmuller J, et al. Superior production of heavy pamamycin derivatives using a bk...
Background Pamamycins are a family of highly bioactive macrodiolide polyketides produced by Streptom...
There is a constant need for new and improved drugs to combat infectious diseases, cancer, and other...