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6- and 8-Prenylnaringenin, novel natural histone deacetylase inhibitors found in hops, exert antitumor activity on melanoma cells

  • Sascha Venturelli
  • , Heike Niessner
  • , Tobias Sinnberg
  • , Alexander Berger
  • , Markus Burkard
  • , Corinna Urmann
  • , Kathrin Donaubauer
  • , Alexander Böcker
  • , Christian Leischner
  • , Herbert Riepl
  • , Jan Frank
  • , Ulrich M. Lauer
  • , Claus Garbe
  • , Christian Busch
  • University of Tübingen
  • Hochschule Weihenstephan-Triesdorf
  • Technical University of Munich
  • Evotec AG
  • Hohenheim University
  • Universitätsklinikum Tübingen
  • German Cancer Research Center

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

Background/Aims: Prenylnaringenins are natural prenylflavonoids with anticancer properties. However, the underlying mechanisms have not been elucidated yet. Here we report a novel mode of action of 6- and 8-prenylnaringenin (PN) on human melanoma cells: Inhibition of cellular histone deacetylases (HDACs). Methods: We performed in silico and in vitro analyses using 6-PN or 8-PN to study a possible interaction of 6-PN or 8-PN with HDAC as well as Western blot and FACS analyses, real-time cell proliferation and cell viability assays to assess the impact of 6-PN and 8-PN on human metastatic melanoma cells. Results: In silico, 6-PN and 8-PN fit into the binding pocket of HDAC2, 4, 7 and 8, binding to the zinc ion of their catalytic center that is essential for enzymatic activity. In vitro, 100 μmol/L of 6-PN or 8-PN inhibited all 11 conserved human HDAC of class I, II and IV. In clinical oncology HDAC inhibitors are currently investigated as new anticancer compounds. In line, treatment of SK-MEL-28 cells with 6-PN or 8-PN induced a hyperacetylation of histone complex H3 within 2 h. Further, 6-PN or 8-PN mediated a prominent, dose-dependent reduction of cellular proliferation and viability of SK-MEL-28 and BLM melanoma cells. This effect was apoptosis-independent and accompanied by down-regulation of mTOR-specific pS6 protein via pERK/pP90 in SK-MEL-28 cells. Conclusion: The identification of a broad inhibitory capacity of 6-PN and 8-PN for HDAC enzymes with antiproliferative effects on melanoma cells opens the perspective for clinical application as novel anti-melanoma drugs and the usage as innovative lead structures for chemical modification to enhance pharmacology or inhibitory activities.

Original languageEnglish
Pages (from-to)543-556
Number of pages14
JournalCellular Physiology and Biochemistry
Volume51
Issue number2
DOIs
StatePublished - 1 Nov 2018
Externally publishedYes

Keywords

  • 6-PN
  • 6-prenylnaringenin
  • 8-PN
  • 8-prenylnaringenin
  • HDAC
  • Histone deacetalyse inhibition
  • Hops
  • Melanoma
  • Therapy

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