Author:
Yushchuk Oleksandr,Ostash Iryna,Mösker Eva,Vlasiuk Iryna,Deneka Maksym,Rückert Christian,Busche Tobias,Fedorenko Victor,Kalinowski Jörn,Süssmuth Roderich D.,Ostash Bohdan
Abstract
AbstractActinobacteria are among the most prolific sources of medically and agriculturally important compounds, derived from their biosynthetic gene clusters (BGCs) for specialized (secondary) pathways of metabolism. Genomics witnesses that the majority of actinobacterial BGCs are silent, most likely due to their low or zero transcription. Much effort is put into the search for approaches towards activation of silent BGCs, as this is believed to revitalize the discovery of novel natural products. We hypothesized that the global transcriptional factor AdpA, due to its highly degenerate operator sequence, could be used to upregulate the expression of silent BGCs. Using Streptomyces cyanogenus S136 as a test case, we showed that plasmids expressing either full-length adpA or its DNA-binding domain led to significant changes in the metabolome. These were evident as changes in the accumulation of colored compounds, bioactivity, as well as the emergence of a new pattern of secondary metabolites as revealed by HPLC-ESI-mass spectrometry. We further focused on the most abundant secondary metabolite and identified it as the polyene antibiotic lucensomycin. Finally, we uncovered the entire gene cluster for lucensomycin biosynthesis (lcm), that remained elusive for five decades until now, and outlined an evidence-based scenario for its adpA-mediated activation.
Funder
Ministry of Education and Science of Ukraine
Bundesministerium für Bildung und Forschung
Deutscher Akademischer Austauschdienst
Projekt DEAL
Publisher
Springer Science and Business Media LLC
Cited by
19 articles.
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