A Maldiisotopic Approach to Discover Natural Products: Cryptomaldamide, a Hybrid Tripeptide from the Marine Cyanobacterium Moorea producens

Journal of Natural Products
2017.0

Abstract

Genome sequencing of microorganisms has revealed a greatly increased capacity for natural products biosynthesis than was previously recognized from compound isolation efforts alone. Hence, new methods are needed for the discovery and description of this hidden secondary metabolite potential. Here we show that provision of heavy nitrogen 15N-nitrate to marine cyanobacterial cultures followed by single-filament MALDI analysis over a period of days was highly effective in identifying a new natural product with an exceptionally high nitrogen content. The compound, named cryptomaldamide, was subsequently isolated using MS to guide the purification process, and its structure determined by 2D NMR and other spectroscopic and chromatographic methods. Bioinformatic analysis of the draft genome sequence identified a 28.7 kB gene cluster that putatively encodes for cryptomaldamide biosynthesis. Notably, an amidinotransferase is proposed to initiate the biosynthetic process by transferring an amidino group from arginine to serine to produce the first residue to be incorporated by the hybrid NRPS-PKS pathway. The maldiisotopic approach presented here is thus demonstrated to provide an orthogonal method by which to discover novel chemical diversity from Nature.

Knowledge Graph

Similar Paper

A Maldiisotopic Approach to Discover Natural Products: Cryptomaldamide, a Hybrid Tripeptide from the Marine Cyanobacterium <i>Moorea producens</i>
Journal of Natural Products 2017.0
Combining Mass Spectrometric Metabolic Profiling with Genomic Analysis: A Powerful Approach for Discovering Natural Products from Cyanobacteria
Journal of Natural Products 2015.0
Combining Mass Spectrometric Metabolic Profiling with Genomic Analysis: A Powerful Approach for Discovering Natural Products from Cyanobacteria
Journal of Natural Products 2015.0
Discovery of a Cryptic Depsipeptide from <i>Streptomyces ghanaensis</i> via MALDI‐MS‐Guided High‐Throughput Elicitor Screening
Angewandte Chemie International Edition 2020.0
Expanding the Described Metabolome of the Marine Cyanobacterium Moorea producens JHB through Orthogonal Natural Products Workflows
PLOS ONE 2015.0
Structure of Trichamide, a Cyclic Peptide from the Bloom-Forming Cyanobacterium <i>Trichodesmium erythraeum</i> , Predicted from the Genome Sequence
Applied and Environmental Microbiology 2006.0
Nature's Combinatorial Biosynthesis Produces Vatiamides A–F
Angewandte Chemie International Edition 2019.0
Biologically active new metabolites from a Florida collection of <i>Moorea producens</i>
Natural Product Research 2017.0
<sup>15</sup>N Stable Isotope Labeling and Comparative Metabolomics Facilitates Genome Mining in Cultured Cyanobacteria
ACS Chemical Biology 2020.0
Malyngamide H, an Ichthyotoxic Amide Possessing a New Carbon Skeleton from the Caribbean Cyanobacterium Lyngbya majuscula
Journal of Natural Products 1995.0