Dokument: The mycotoxin Beauvericin is an uncompetitive inhibitor of Cathepsin B

Titel:The mycotoxin Beauvericin is an uncompetitive inhibitor of Cathepsin B
URL für Lesezeichen:https://docserv.uni-duesseldorf.de/servlets/DocumentServlet?id=69857
URN (NBN):urn:nbn:de:hbz:061-20250611-114114-6
Kollektion:Publikationen
Sprache:Englisch
Dokumententyp:Wissenschaftliche Texte » Artikel, Aufsatz
Medientyp:Text
Autoren: Yang, Xiaoli [Autor]
Cea-Medina, Pablo [Autor]
Gopalswamy, Mohanraj [Autor]
Vaidya, Aparna [Autor]
Schavier, Sonja [Autor]
Oltzen, Shixin [Autor]
Moßner, Sofie [Autor]
Huang, Anfei [Autor]
Qi, Jing [Autor]
Hölken, Johanna Maria [Autor]
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Dateien vom 11.06.2025 / geändert 11.06.2025
Stichwörter:molecular docking analysis, natural compound biological activity, Cathepsin B, STD-NMR analyses, Beauvericin, tumor therapy, enzyme kinetics, uncompetitive inhibitor
Beschreibung:Beauvericin (BEA), a cyclic depsipeptide, is a mycotoxin of the enniatin family and the secondary metabolite of various toxigenic fungi. Multiple biological functions of BEA have been well investigated, such as anti-cancer, anti-inflammatory, anti-microbial, and immune-activating functions. In a recentstudy, we showed that BEA can target Toll-like receptor 4 (TLR4) to induce dendritic cell (DC) activation. In an in silico screen, we identified Cathepsin B (CTSB) as a potential additional interaction partner for BEA, which has been verified recently in a study showing inhibition of human CTSB activity by BEA in cell-free assays. The underlying molecular mechanism of BEA-mediated CTSB inhibition remains unknown, as do the cellular entities where this inhibition takes place. In this study, we determine the effects of BEA on CTSB within granulocyte-macrophage colony-stimulating factor (GM-CSF)-cultured bone marrow-derived dendritic cells (BMDCs) and human leukemia monocytic cell line THP-1 induced immature dendritic cells (iDCs). BEA significantly suppresses CTSB activity in both mouse BMDCs and human iDCs. NMR analyses indicate that BEA directly interacts with CTSB. Enzyme kinetics show that BEA can directly inhibit CTSB activity and acts as an uncompetitive inhibitor. Molecular docking analysis revealed a putative binding site for BEA in human CTSB. Collectively, our study is the first to describe the molecular mechanisms underlying the biological activity of BEA against human CTSB, suggesting that CTSB may be a candidate target for tumor therapy.
Rechtliche Vermerke:Originalveröffentlichung:
Yang, X., Cea-Medina, P., Gopalswamy, M., Vaidya, A., Schavier, S., Oltzen, S., Moßner, S., Huang, A., Qi, J., Hölken, J. M., Teusch, N., Floß, D. M., Uhrberg, M., Gohlke, H., & Scheu, S. (2025). The mycotoxin Beauvericin is an uncompetitive inhibitor of Cathepsin B. Protein Science, 34(6), Article e70173. https://doi.org/10.1002/pro.70173
Lizenz:Creative Commons Lizenzvertrag
Dieses Werk ist lizenziert unter einer Creative Commons Namensnennung 4.0 International Lizenz
Fachbereich / Einrichtung:Mathematisch- Naturwissenschaftliche Fakultät
Medizinische Fakultät
Dokument erstellt am:11.06.2025
Dateien geändert am:11.06.2025
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