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Synthesis of functionalized 2,3-diaminopropionates and their potential for directed monobactam biosynthesis.

Michael S LichstrahlLukas KahlertRongfeng LiTrevor A ZandiJerry YangCraig A Townsend
Published in: Chemical science (2023)
The N -sulfonated monobactams harbor considerable potential to combat emerging bacterial infections that are problematic to treat due to their metallo-β-lactamase mediated resistance against conventional β-lactam antibiotics. Herein, we report a divergent synthesis of C3-substituted 2,3-diaminopropionates featuring an array of small functional groups and examine their potential as alternative precursors during monobactam biosynthesis in a mutant strain ( ΔsulG ) of Pseudomonas acidophila that is deficient in the supply of this native precursor. In vitro assays revealed high diastereoselectivity, as well as a substrate tolerance by the terminal adenylation domain of the non-ribosomal peptide synthetase (NRPS) SulM toward the majority of synthetic analogs. Chemical complementation of this mutant yielded a fluorinated, bioactive monobactam through fermentation as confirmed by a combination of spectrometric data and microbiological assays. This study demonstrates site-specific functionalization of a clinically important natural product and sets in place a platform for further strain improvements and engineered NRPS-biosynthesis of non-native congeners.
Keyphrases
  • high throughput
  • gram negative
  • escherichia coli
  • human health
  • wild type
  • single cell
  • ms ms
  • deep learning
  • klebsiella pneumoniae
  • climate change
  • amino acid
  • liquid chromatography