Molecular Networking‐Guided Discovery of Kyonggic Acids in <i>Massilia</i> spp.

Открытие кёнггиевых кислот в Massilia spp. с использованием молекулярной сетевой аналитики
Till Steinmetz, Anton Lindig, Stephan Lütz, Markus Nett
2024-03-21

Mass spectrometryMassilia spp.Molecular networkingUV-directed isolationacyl amino acidskyonggic acidssecondary metabolomethalassotalic acid Ctyrosinase inhibition
Abstract In recent years, bacteria of the genus Massilia have been identified as promising sources of bioactive natural products. In this study, we used mass spectrometry (MS)‐based molecular networking for the first comprehensive analysis of the secondary metabolome of these microorganisms. Annotation of the detected metabolite clusters with a mass fragmentation database revealed several compounds not previously known to be produced by Massilia species. To secure sufficient material for further structural analyses as well as biological testing, we selected the most promising producer strains from our molecular networking analysis and subjected them to larger‐scale cultivation. Following extraction and UV‐directed isolation, we obtained five metabolites in milligram quantities. In addition to a cyclic dipeptide, we elucidated the structures of four acyl amino acids that are related to thalassotalic acid C from the marine bacterium Thalassotalea sp. The Massilia ‐derived kyonggic acids were found to inhibit the enzyme tyrosinase, which is involved in melanin biosynthesis influencing skin and hair pigmentation. This study illustrates the value of combining spectroscopic and computational tools in natural product discovery in order to detect and guide the isolation of previously overlooked bioactive compounds.
1
Larger-scale cultivation, extraction, and UV-directed isolation yielded five metabolites in milligram quantities from selected Massilia strains.
2
MS-based molecular networking was used for the first comprehensive analysis of the secondary metabolome of Massilia species.
3
Massilia-derived kyonggic acids were found to inhibit tyrosinase, an enzyme involved in melanin biosynthesis.
4
Molecular networking annotated metabolite clusters revealing several compounds not previously known to be produced by Massilia.
5
Structural elucidation identified one cyclic dipeptide and four acyl amino acids related to thalassotalic acid C.

Kyonggic acids produced by Massilia spp. (Massilia-derived kyonggic acids)

Isolation, structural elucidation, and bioactivity characterization (tyrosinase inhibition) of Massilia-derived kyonggic acids detected via MS-based molecular networking

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2024-03-21
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Till Steinmetz
Anton Lindig
Stephan Lütz
Markus Nett
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