Login / Signup

Continuous bioactivity-dependent evolution of an antibiotic biosynthetic pathway.

Chad W JohnstonAhmed H BadranJames J Collins
Published in: Nature communications (2020)
Antibiotic biosynthetic gene clusters (BGCs) produce bioactive metabolites that impart a fitness advantage to their producer, providing a mechanism for natural selection. This selection drives antibiotic evolution and adapts BGCs for expression in different organisms, potentially providing clues to improve heterologous expression of antibiotics. Here, we use phage-assisted continuous evolution (PACE) to achieve bioactivity-dependent adaptation of the BGC for the antibiotic bicyclomycin (BCM), facilitating improved production in a heterologous host. This proof-of-principle study demonstrates that features of natural bioactivity-dependent evolution can be engineered to access unforeseen routes of improving metabolic pathways and product yields.
Keyphrases
  • poor prognosis
  • physical activity
  • genome wide
  • pseudomonas aeruginosa
  • ms ms
  • gene expression
  • binding protein
  • copy number
  • transcription factor
  • dna methylation