Efficient backbone cyclization of linear peptides by a recombinant asparaginyl endopeptidase

Karen S. Harris, Thomas Durek, Quentin Kaas, Aaron G. Poth, Edward K. Gilding, Brendon F. Conlan, Ivana Saska, Norelle L. Daly, Nicole L. Van Der Weerden, David J. Craik, Marilyn A. Anderson*

*Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    213 Citations (Scopus)

    Abstract

    Cyclotides are diverse plant backbone cyclized peptides that have attracted interest as pharmaceutical scaffolds, but fundamentals of their biosynthetic origin remain elusive. Backbone cyclization is a key enzyme-mediated step of cyclotide biosynthesis and confers a measure of stability on the resultant cyclotide. Furthermore, cyclization would be desirable for engineered peptides. Here we report the identification of four asparaginyl endopeptidases (AEPs), proteases implicated in cyclization, from the cyclotide-producing plant Oldenlandia affinis. We recombinantly express OaAEP1 b and find it functions preferably as a cyclase by coupling C-terminal cleavage of propeptide substrates with backbone cyclization. Interestingly, OaAEP1 b cannot cleave at the N-terminal site of O. affinis cyclotide precursors, implicating additional proteases in cyclotide biosynthesis. Finally, we demonstrate the broad utility of this enzyme by cyclization of peptides unrelated to cyclotides. We propose that recombinant OaAEP1 b is a powerful tool for use in peptide engineering applications where increased stability of peptide products is desired.

    Original languageEnglish
    Article number10199
    JournalNature Communications
    Volume6
    DOIs
    Publication statusPublished - 18 Dec 2015

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