7pct Citations

Pathogenic bacteria remodel central metabolic enzyme to build a cyclopropanol warhead.

Nat Chem (2022)
Related entries: 7pcc, 7pce, 7pcg, 7pci, 7pcl, 7pcm, 7pcn, 7pco

Cited: 6 times
EuropePMC logo PMID: 35906404

Abstract

Bacteria of the Burkholderia pseudomallei (BP) group pose a global health threat, causing the infectious diseases melioidosis, a common cause of pneumonia and sepsis, and glanders, a contagious zoonosis. A trait of BP bacteria is a conserved gene cluster coding for the biosynthesis of polyketides (malleicyprols) with a reactive cyclopropanol unit that is critical for virulence. Enzymes building this warhead represent ideal targets for antivirulence strategies but the biochemical basis of cyclopropanol formation is unknown. Here we describe the formation of the malleicyprol warhead. We show that BurG, an unusual NAD+-dependent member of the ketol-acid reductoisomerase family, constructs the strained cyclopropanol ring. Biochemical assays and a suite of eight crystal structures of native and mutated BurG with bound analogues and inhibitors provide snapshots of each step of the complex reaction mechanism, involving a concealed oxidoreduction and a C-S bond cleavage. Our findings illustrate a remarkable case of neofunctionalisation, where a biocatalyst from central metabolism has been evolutionarily repurposed for warhead production in pathogens.

Reviews citing this publication (2)

  1. S-Adenosylmethionine: more than just a methyl donor. Lee YH, Ren D, Jeon B, Liu HW. Nat Prod Rep 40 1521-1549 (2023)
  2. Burkholderia pseudomallei and melioidosis. Meumann EM, Limmathurotsakul D, Dunachie SJ, Wiersinga WJ, Currie BJ. Nat Rev Microbiol (2023)

Articles citing this publication (4)

  1. An NmrA-like enzyme-catalysed redox-mediated Diels-Alder cycloaddition with anti-selectivity. Liu Z, Rivera S, Newmister SA, Sanders JN, Nie Q, Liu S, Zhao F, Ferrara JD, Shih HW, Patil S, Xu W, Miller MD, Phillips GN, Houk KN, Sherman DH, Gao X. Nat Chem 15 526-534 (2023)
  2. Post-Cyclization Skeletal Rearrangements in Plant Triterpenoid Biosynthesis by a Pair of Branchpoint Isomerases. Chuang L, Liu S, Franke J. J Am Chem Soc 145 5083-5091 (2023)
  3. An intramodular thioesterase domain catalyses chain release in the biosynthesis of a cytotoxic virulence factor. Little R, Trottmann F, Preissler M, Hertweck C. RSC Chem Biol 3 1121-1128 (2022)
  4. Bioinformatics-guided discovery of biaryl-linked lasso peptides. Saad H, Majer T, Bhattarai K, Lampe S, Nguyen DT, Kramer M, Straetener J, Brötz-Oesterhelt H, Mitchell DA, Gross H. Chem Sci 14 13176-13183 (2023)