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Activation and Identification of a Griseusin Cluster in Streptomyces sp. CA-256286 by Employing Transcriptional Regulators and Multi-Omics Methods.

Authors :
Beck, Charlotte
Gren, Tetiana
Ortiz-López, Francisco Javier
Jørgensen, Tue Sparholt
Carretero-Molina, Daniel
Martín Serrano, Jesús
Tormo, José R.
Oves-Costales, Daniel
Kontou, Eftychia E.
Mohite, Omkar S.
Mingyar, Erik
Stegmann, Evi
Genilloud, Olga
Weber, Tilmann
Source :
Molecules; Nov2021, Vol. 26 Issue 21, p6580, 1p
Publication Year :
2021

Abstract

Streptomyces are well-known producers of a range of different secondary metabolites, including antibiotics and other bioactive compounds. Recently, it has been demonstrated that "silent" biosynthetic gene clusters (BGCs) can be activated by heterologously expressing transcriptional regulators from other BGCs. Here, we have activated a silent BGC in Streptomyces sp. CA-256286 by overexpression of a set of SARP family transcriptional regulators. The structure of the produced compound was elucidated by NMR and found to be an N-acetyl cysteine adduct of the pyranonaphtoquinone polyketide 3′-O-α-d-forosaminyl-(+)-griseusin A. Employing a combination of multi-omics and metabolic engineering techniques, we identified the responsible BGC. These methods include genome mining, proteomics and transcriptomics analyses, in combination with CRISPR induced gene inactivations and expression of the BGC in a heterologous host strain. This work demonstrates an easy-to-implement workflow of how silent BGCs can be activated, followed by the identification and characterization of the produced compound, the responsible BGC, and hints of its biosynthetic pathway. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
26
Issue :
21
Database :
Complementary Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
153603028
Full Text :
https://doi.org/10.3390/molecules26216580