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Kaempferol,a new nutrition-derived pan-inhibitor of human histone deacetylases
Authors:Alexander Berger  Sascha Venturelli  Mascha Kallnischkies  Alexander Böcker  Christian Busch  Timo Weiland  Seema Noor  Christian Leischner  Thomas S. Weiss  Ulrich M. Lauer  Stephan C. Bischoff  Michael Bitzer
Affiliation:1. Department of Internal Medicine I, Medical University Hospital, Tuebingen, Germany;2. Department of Nutritional Medicine, University of Hohenheim, Stuttgart, Germany;3. Evotec AG, Hamburg, Germany;4. Section of Dermato-Oncology, Department of Dermatology and Allergology, University Hospital, Tuebingen, Germany;5. Center for Liver Cell Research, University Hospital, Regensburg, Germany
Abstract:Kaempferol is a natural polyphenol belonging to the group of flavonoids. Different biological functions like inhibition of oxidative stress in plants or animal cells and apoptosis induction have been directly associated with kaempferol. The underlying mechanisms are only partially understood. Here we report for the first time that kaempferol has a distinct epigenetic activity by inhibition of histone deacetylases (HDACs). In silico docking analysis revealed that it fits into the binding pocket of HDAC2, 4, 7 or 8 and thereby binds to the zinc ion of the catalytic center. Further in vitro profiling of all conserved human HDACs of class I, II and IV showed that kaempferol inhibited all tested HDACs. In clinical oncology, HDAC inhibitors are currently under investigation as new anticancer compounds. Therefore, we studied the effect of kaempferol on human-derived hepatoma cell lines HepG2 and Hep3B as well as on HCT-116 colon cancer cells and found that it induces hyperacetylation of histone complex H3. Furthermore, kaempferol mediated a prominent reduction of cell viability and proliferation rate. Interestingly, toxicity assays revealed signs of relevant cellular toxicity in primary human hepatocytes only starting at 50 μM as well as in an in vivo chicken embryotoxicity assay at 200 μM.In conclusion, the identification of a novel broad inhibitory capacity of the natural compound kaempferol for human-derived HDAC enzymes opens up the perspective for clinical application in both tumor prevention and therapy. Moreover, kaempferol may serve as a novel lead structure for chemical optimization of pharmacokinetics, pharmacology or inhibitory activities.
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