Issue 14, 2023

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

Abstract

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.

Graphical abstract: Synthesis of functionalized 2,3-diaminopropionates and their potential for directed monobactam biosynthesis

Supplementary files

Article information

Article type
Edge Article
Submitted
14 Dec 2022
Accepted
14 Mar 2023
First published
20 Mar 2023
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2023,14, 3923-3931

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

M. S. Lichstrahl, L. Kahlert, R. Li, T. A. Zandi, J. Yang and Craig. A. Townsend, Chem. Sci., 2023, 14, 3923 DOI: 10.1039/D2SC06893A

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