<div><p>Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and food additives. Attempts to engineer their biosynthetic gene clusters (BGCs) to produce unnatural metabolites with improved properties are often frustrated by the unpredictability and complexity of the enzymes that synthesize these molecules, suggesting that genetic changes within BGCs are limited by specific constraints. Here, by performing a systematic computational analysis of BGC evolution, we derive evidence for three findings that shed light on the ways in which, despite these constraints, nature successfully invents new molecules: 1) BGCs for complex molecules often evolve through the successive merger of smaller sub-clusters, w...
Microorganisms are Nature's little engineers of a remarkable array of bioactive small molecules that...
Modular polyketide synthases (PKSs) of bacteria provide an enormous reservoir of natural chemical di...
AbstractIn silico methods for linking genomic space to chemical space have played a crucial role in ...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
© 2014 Medema et al.Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs...
Natural product biosynthetic pathways generate molecules of enormous structural complexity and exqui...
Microorganisms are Nature's little engineers of a remarkable array of bioactive small molecules that...
Microorganisms are Nature's little engineers of a remarkable array of bioactive small molecules that...
Biosynthetic gene clusters (BGCs) make small molecules with fitness-enhancing activities that drive ...
A wide range of bioactive compounds is produced by enzymes and enzymatic complexes encoded in biosyn...
Microorganisms are Nature's little engineers of a remarkable array of bioactive small molecules that...
Modular polyketide synthases (PKSs) of bacteria provide an enormous reservoir of natural chemical di...
AbstractIn silico methods for linking genomic space to chemical space have played a crucial role in ...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs, insecticides and f...
© 2014 Medema et al.Bacterial secondary metabolites are widely used as antibiotics, anticancer drugs...
Natural product biosynthetic pathways generate molecules of enormous structural complexity and exqui...
Microorganisms are Nature's little engineers of a remarkable array of bioactive small molecules that...
Microorganisms are Nature's little engineers of a remarkable array of bioactive small molecules that...
Biosynthetic gene clusters (BGCs) make small molecules with fitness-enhancing activities that drive ...
A wide range of bioactive compounds is produced by enzymes and enzymatic complexes encoded in biosyn...
Microorganisms are Nature's little engineers of a remarkable array of bioactive small molecules that...
Modular polyketide synthases (PKSs) of bacteria provide an enormous reservoir of natural chemical di...
AbstractIn silico methods for linking genomic space to chemical space have played a crucial role in ...