4.7 Article

Design, Synthesis, and Biological Evaluation of Novel Deguelin-Based Heat Shock Protein 90 (HSP90) Inhibitors Targeting Proliferation and Angiogenesis

Journal

JOURNAL OF MEDICINAL CHEMISTRY
Volume 55, Issue 24, Pages 10863-10884

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jm301488q

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Funding

  1. National Research Foundation
  2. Korea Government (MEST) [2012-0006019]
  3. Global Core Research Center (GCRC) [2012-0001187]
  4. National Research Foundation (NRF), Ministry of Education, Science and Technology (MEST), Republic of Korea

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Deguelin exhibits potent apoptotic and antiangiogenic activities in a variety of transformed cells and cancer cells. Deguelin also exhibits potent tumor suppressive effects in xenograft tumor models for many human cancers. Our initial studies confirmed that deguelin disrupts ATP binding to HSP90 and consequently induces destabilization of its client proteins such as HIF-1 alpha. Interestingly, a fluorescence probe assay revealed that deguelin and its analogues do not compete with ATP binding to the N-terminus of HSP90, unlike most HSP90 inhibitors. To determine the key parts of deguelin that contribute to its potent HSP90 inhibition, as well as its antiproliferative and antiangiogenic activities, we have established a structure-activity relationship (SAR) of deguelin. In the course of these studies, we identified a series of novel and potent HSP90 inhibitors. In particular, analogues 54 and 69, the B- and C-ring-truncated compounds, exhibited excellent antiproliferative activities with IC50 of 140 and 490 nM in the H1299 cell line, respectively, and antiangiogenic activities in zebrafish embryos in a dose dependent manner (0.25-1.25 mu M).

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