Deguelin analogue SH-1242 inhibits Hsp90 activity and exerts potent anticancer efficacy with limited neurotoxicity

Su Chan Lee, Hye Young Min, Hoon Choi, Song Yi Bae, Kwan Hee Park, Seung Yeob Hyun, Ho Jin Lee, Jayoung Moon, Shin Hyung Park, Jun Yong Kim, Hongchan An, So Jung Park, Ji Hae Seo, Seungbeom Lee, Young Myeong Kim, Hyun Ju Park, Sang Kook Lee, Jeewoo Lee, Jeeyeon Lee, Kyu Won KimYoung Ger Suh, Ho Young Lee

Research output: Contribution to journalArticlepeer-review

Abstract

The Hsp90 facilitates proper folding of signaling proteins associated with cancer progression, gaining attention as a target for therapeutic intervention. The natural rotenoid deguelin was identified as an Hsp90 inhibitor, but concerns about neurotoxicity have limited prospects for clinical development. In this study, we report progress on deguelin analogues that address this limitation, focusing on the novel analogue SH-1242 as a candidate to broadly target human lung cancer cells, including those that are chemoresistant or harboring KRAS mutations. In a KRAS-driven mouse model of lung cancer, SH-1242 administration reduced tumor multiplicity, volume, and load. Similarly, in human cell line-based or patientderived tumor xenograft models, SH-1242 induced apoptosis and reduced tumor vasculature in the absence of detectable toxicity. In contrast to deguelin, SH-1242 toxicity was greatly reduced in normal cells and when administered to rats did not produce obvious histopathologic features in the brain. Mechanistic studies revealed that SH-1242 bound to the Cterminal ATP-binding pocket of Hsp90, disrupting the ability to interact with its co-chaperones and clients and triggering a degradation of client proteins without affecting Hsp70 expression. Taken together, our findings illustrate the superior properties of SH-1242 as an Hsp90 inhibitor and as an effective antitumor and minimally toxic agent, providing a foundation for advancing further preclinical and clinical studies.

Original languageEnglish (US)
Pages (from-to)686-699
Number of pages14
JournalCancer Research
Volume76
Issue number3
DOIs
StatePublished - Feb 1 2016
Externally publishedYes

ASJC Scopus subject areas

  • Oncology
  • Cancer Research

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