LSD1 Promotes Prostate Cancer Cell Survival by Destabilizing FBXW7 at Post-Translational Level

Xu-Ke Qin1, Yang Du1, Xiu-Heng Liu1

  • 1Department of Urology, Renmin Hospital of Wuhan University, Wuhan, China.

Frontiers in Oncology
|March 12, 2021
PubMed

Insights

Lysine-specific demethylase 1 (LSD1) promotes prostate cancer (PCa) survival by destabilizing the tumor suppressor FBXW7 through a non-demethylase mechanism. Allosteric inhibition of LSD1 blocks this interaction, offering a new therapeutic strategy for PCa.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Prostate cancer (PCa) is a leading cause of cancer death globally, with castration-resistant PCa (CRPCa) posing significant treatment challenges.
  • Lysine-specific demethylase 1 (LSD1) is upregulated in PCa and linked to poor prognosis, making it a potential therapeutic target.
  • While LSD1's demethylase activity is studied, its non-demethylation-dependent functions in PCa remain largely unknown.

Purpose of the Study:

  • To investigate the impact of LSD1's non-canonical function on PCa cell survival.
  • To explore the interaction between LSD1 and the cancer suppressor protein FBXW7 in PCa.
  • To evaluate novel therapeutic strategies targeting LSD1 in PCa.

Main Methods:

  • Overexpression of FBXW7 in LNCaP and PC3 cell lines to assess its effect on PCa cell viability.
  • Knockdown of LSD1 in PCa cell lines and analysis of FBXW7 protein levels and oncoprotein expression via Western blot.
  • Comparison of the efficacy of an allosteric LSD1 inhibitor (SP-2509) and a catalytic inhibitor (GSK-2879552) in PCa cell lines.

Main Results:

  • Upregulated FBXW7 suppressed PCa cell viability by inhibiting oncoproteins like c-MYC and NOTCH-1.
  • LSD1 knockdown increased FBXW7 protein levels and decreased oncoprotein levels, suggesting LSD1 destabilizes FBXW7 via protein-protein interaction.
  • Both wild-type LSD1 and a catalytically deficient mutant abrogated the effects of LSD1 knockdown, confirming a demethylation-independent function.
  • The allosteric inhibitor SP-2509 suppressed PCa cell survival by blocking the LSD1-FBXW7 interaction, an effect not achieved by the catalytic inhibitor GSK-2879552.

Conclusions:

  • LSD1 promotes PCa cell survival by destabilizing FBXW7 through a demethylation-independent mechanism.
  • Targeting the LSD1-FBXW7 interaction with allosteric inhibitors represents a promising new therapeutic direction for PCa treatment.