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Updated: Sep 19, 2025

Mass Spectrometry-Guided Genome Mining as a Tool to Uncover Novel Natural Products
Published on: March 12, 2020
Genome Mining of Fungal Aza-Polycyclic Natural Products Derived from Arginine-Containing Cyclodipeptides
Kanji Niwa1, David A Delgadillo2, Danielle A Yee1
1Department of Chemical and Biomolecular Engineering, University of California, Los Angeles, California 90095, United States.
Abstract:
Arginine-containing cyclodipeptide synthases (RCDPSs) from fungi constitute a new family of tRNA-dependent enzymes that can biosynthesize cyclo-Arg-Xaa dipeptides. The incorporation of an arginine residue significantly expands the chemical space of guanidine-containing natural products. Here, we mined fungal biosynthetic gene clusters (BGCs) containing different RCDPS to discover aza-polycyclic natural products. The pno BGC from Aspergillus pseudonomius produced pentacyclic pyrroloindoline diketopiperazines (DKPs) of which the arginine side chain is oxidatively cyclized into a guanidino-proline. Two RCDPS-encoding BGCs, car and esh from Aspergillus carlsbadensis and Eupenicillium shearii, respectively, produced DKPs connected to five- and seven-membered spirocycles as a result of oxidative cyclization of the guanidino group catalyzed by α-ketoglutarate/Fe(II)-dependent oxygenases. The esh pathway involves a tandem cyclization and epimerization to generate the guanidino-bridged tricyclo-[3.31,2.2.2]-piperazinedione core. The aza-polycyclic structures characterized in this work demonstrate the potential of using RCDPS as a starting point for the discovery of new natural products.
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