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Hololectin Interdomain Linker Determines Asparaginyl Endopeptidase-Mediated Maturation of Antifungal Hevein-Like Peptides in Oats

  • Shining Loo
  • , Stephanie Victoria Tay
  • , Antony Kam
  • , Warren Lee
  • , James P. Tam*
  • *Corresponding author for this work
    • Nanyang Technological University

    Research output: Contribution to journalArticlepeer-review

    11 Citations (Scopus)

    Abstract

    Heveins and hevein-containing (hev-) lectins play important roles in stress and pathogenic responses in plants but cause health concerns in humans. Hev-hololectins contain multiple modular hev-peptide domains and are abundantly present in cereals and pseudocereals. However, it is unclear why some cereal hev-hololectins are presented as different forms of proteolytically processed proteoforms. Here we show the precursor architectures of hev-hololectins lead to different processing mechanisms to give either hololectins or hevein-like peptides. We used mass spectrometry and datamining to screen hev-peptides from common cereals, and identified from the oat plant Avena sativa nine novel hevein-like peptides, avenatide aV1–aV9. Bioinformatic analysis revealed that asparaginyl endopeptidase (AEP) can be responsible for the maturation of the highly homologous avenatides from five oat hev-hololectin precursors, each containing four tandemly repeating, hev-like avenatide domains connected by AEP-susceptible linkers with 13–16 residues in length. Further analysis of cereal hev- hololectins showed that the linker lengths provide a distinguishing feature between their cleavable and non-cleavable precursors, with the cleavables having considerably longer linkers (>13 amino acids) than the non-cleavables (
    Original languageEnglish
    JournalFrontiers in Plant Science
    Volume13
    Publication statusPublished - 10 May 2022

    Keywords

    • hololectin
    • hevein
    • oats
    • biosynthesis
    • celiac diseases
    • anti-fungal
    • asparaginyl endopeptidase

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