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Elucidating the molecular programming of a nonlinear non-ribosomal peptide synthetase responsible for fungal siderophore biosynthesis

Author

Listed:
  • Matthew Jenner

    (University of Warwick
    University of Warwick)

  • Yang Hai

    (University of California
    University of California)

  • Hong H. Nguyen

    (University of California
    Transmed Co., Ltd.)

  • Munro Passmore

    (University of Warwick)

  • Will Skyrud

    (University of California
    Arzeda, 3421 Thorndyke Ave W)

  • Junyong Kim

    (University of California)

  • Neil K. Garg

    (University of California)

  • Wenjun Zhang

    (University of California)

  • Rachel R. Ogorzalek Loo

    (University of California)

  • Yi Tang

    (University of California)

Abstract

Siderophores belonging to the ferrichrome family are essential for the viability of fungal species and play a key role for virulence of numerous pathogenic fungi. Despite their biological significance, our understanding of how these iron-chelating cyclic hexapeptides are assembled by non-ribosomal peptide synthetase (NRPS) enzymes remains poorly understood, primarily due to the nonlinearity exhibited by the domain architecture. Herein, we report the biochemical characterization of the SidC NRPS, responsible for construction of the intracellular siderophore ferricrocin. In vitro reconstitution of purified SidC reveals its ability to produce ferricrocin and its structural variant, ferrichrome. Application of intact protein mass spectrometry uncovers several non-canonical events during peptidyl siderophore biosynthesis, including inter-modular loading of amino acid substrates and an adenylation domain capable of poly-amide bond formation. This work expands the scope of NRPS programming, allows biosynthetic assignment of ferrichrome NRPSs, and sets the stage for reprogramming towards novel hydroxamate scaffolds.

Suggested Citation

  • Matthew Jenner & Yang Hai & Hong H. Nguyen & Munro Passmore & Will Skyrud & Junyong Kim & Neil K. Garg & Wenjun Zhang & Rachel R. Ogorzalek Loo & Yi Tang, 2023. "Elucidating the molecular programming of a nonlinear non-ribosomal peptide synthetase responsible for fungal siderophore biosynthesis," Nature Communications, Nature, vol. 14(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-38484-8
    DOI: 10.1038/s41467-023-38484-8
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    1. Kathryn Tunyasuvunakool & Jonas Adler & Zachary Wu & Tim Green & Michal Zielinski & Augustin Žídek & Alex Bridgland & Andrew Cowie & Clemens Meyer & Agata Laydon & Sameer Velankar & Gerard J. Kleywegt, 2021. "Highly accurate protein structure prediction for the human proteome," Nature, Nature, vol. 596(7873), pages 590-596, August.
    2. John Jumper & Richard Evans & Alexander Pritzel & Tim Green & Michael Figurnov & Olaf Ronneberger & Kathryn Tunyasuvunakool & Russ Bates & Augustin Žídek & Anna Potapenko & Alex Bridgland & Clemens Me, 2021. "Highly accurate protein structure prediction with AlphaFold," Nature, Nature, vol. 596(7873), pages 583-589, August.
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