Maramycin, a Cytotoxic Isoquinolinequinone Terpenoid Produced through Heterologous Expression of a Bifunctional Indole Prenyltransferase/Tryptophan Indole-Lyase in S. albidoflavus

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Isoquinolinequinones represent an important family of natural alkaloids with profound biological activities. Heterologous expression of a rare bifunctional indole prenyltransferase/tryptophan indole-lyase enzyme from Streptomyces mirabilis P8-A2 in S. albidoflavus J1074 led to the activation of a putative isoquinolinequinone biosynthetic gene cluster and production of a novel isoquinolinequinone alkaloid, named maramycin (1). The structure of maramycin was determined by analysis of spectroscopic (1D/2D NMR) and MS spectrometric data. The prevalence of this bifunctional biosynthetic enzyme was explored and found to be a recent evolutionary event with only a few representatives in nature. Maramycin exhibited moderate cytotoxicity against human prostate cancer cell lines, LNCaP and C4-2B. The discovery of maramycin (1) enriched the chemical diversity of natural isoquinolinequinones and also provided new insights into crosstalk between the host biosynthetic genes and the heterologous biosynthetic genes in generating new chemical scaffolds.

OriginalsprogEngelsk
TidsskriftACS chemical biology
ISSN1554-8929
DOI
StatusAccepteret/In press - 2024

Bibliografisk note

Funding Information:
This study was supported by the Danish National Research Foundation (DNRF137) as part of the Center for Microbial Secondary Metabolites (CeMiSt). S.E.W. acknowledges funding by the Novo Nordisk Foundation Postdoctoral Fellowship (NNF22OC0079021). T.W. acknowledges funding by the Novo Nordisk Foundation (NNF20CC0035580, NNF16OC0021746). The NMR Center DTU and the Villum Foundation are acknowledged for access to the 800 MHz spectrometer. The metabolomic data were generated at DTU Metabolomics Core facilities with the help of A. Andersen. The IR spectrum was recorded with help from Y. Qiao (NNF22OC0079928).

Publisher Copyright:
© 2024 American Chemical Society.

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