The first genome scale model (GSM) for Streptomyces leeuwenhoekii C34 was developed to study the biosynthesis pathways of specialized metabolites and to find metabolic engineering targets for enhancing their production. The model, iVR1007, consists of 1,722 reactions, 1,463 metabolites, and 1,007 genes, it includes the biosynthesis pathways of chaxamycins, chaxalactins, desferrioxamines, ectoine, and other specialized metabolites. iVR1007 was validated using experimental information of growth on 166 different sources of carbon, nitrogen and phosphorous, showing an 83.7% accuracy. The model was used to predict metabolic engineering targets for enhancing the biosynthesis of chaxamycins and chaxalactins. Gene knockouts, such as sle03600 (L-hom...
Artículo de publicación ISIBackground: Next Generation DNA Sequencing (NGS) and genome mining of act...
Many biosynthetic gene clusters (BGCs) require heterologous expression to realize their genetic pote...
In this study we have applied an integrated system biology approach to characterize the metabolic la...
Abstract Background Streptomyces species produce a vast diversity of secondary metabolites of clinic...
Streptomyces coelicolor is a model organism for the Actinobacteria, a phylum known to produce an ext...
Doctor en Ciencias de la Ingeniería, Mención Ingeniería Química y BiotecnologíaStreptomyces leeuwenh...
Both academic and industrial laboratories currently use constraint - based reconstruction methods to...
Systems biology approaches are increasingly applied to explore the potential of actinomycetes for th...
Today there is a tremendous need for new antibiotics and novel cytotoxic compounds against cancer ce...
In this work, we expanded and updated a genome-scale metabolic model of Streptomyces clavuligerus. T...
Streptomyces species are often referred to as “antibiotic factories” due to their ability to produce...
Streptomycetes are known for their inherent ability to produce pharmaceutically relevant secondary m...
Streptomyces albus J1074 is recognized as an effective host for heterologous production of natural p...
Streptomyces bacteria have a remarkable capacity to biosynthesize natural products. The discovery of...
The emergence of antibiotic resistance poses a threat to humankind in combination with the significa...
Artículo de publicación ISIBackground: Next Generation DNA Sequencing (NGS) and genome mining of act...
Many biosynthetic gene clusters (BGCs) require heterologous expression to realize their genetic pote...
In this study we have applied an integrated system biology approach to characterize the metabolic la...
Abstract Background Streptomyces species produce a vast diversity of secondary metabolites of clinic...
Streptomyces coelicolor is a model organism for the Actinobacteria, a phylum known to produce an ext...
Doctor en Ciencias de la Ingeniería, Mención Ingeniería Química y BiotecnologíaStreptomyces leeuwenh...
Both academic and industrial laboratories currently use constraint - based reconstruction methods to...
Systems biology approaches are increasingly applied to explore the potential of actinomycetes for th...
Today there is a tremendous need for new antibiotics and novel cytotoxic compounds against cancer ce...
In this work, we expanded and updated a genome-scale metabolic model of Streptomyces clavuligerus. T...
Streptomyces species are often referred to as “antibiotic factories” due to their ability to produce...
Streptomycetes are known for their inherent ability to produce pharmaceutically relevant secondary m...
Streptomyces albus J1074 is recognized as an effective host for heterologous production of natural p...
Streptomyces bacteria have a remarkable capacity to biosynthesize natural products. The discovery of...
The emergence of antibiotic resistance poses a threat to humankind in combination with the significa...
Artículo de publicación ISIBackground: Next Generation DNA Sequencing (NGS) and genome mining of act...
Many biosynthetic gene clusters (BGCs) require heterologous expression to realize their genetic pote...
In this study we have applied an integrated system biology approach to characterize the metabolic la...