RhoB upregulation leads to either apoptosis or cytostasis through differential target selection

Laura A Marlow1, Ilah Bok1, Robert C Smallridge2

  • 1Departments of Cancer BiologyInternal MedicineDivision of EndocrinologyEndocrine Malignancy Working GroupMayo Clinic, 4500 San Pablo Road, Jacksonville, Florida 32224, USA.

Insights

Anaplastic thyroid carcinoma treatment may improve by combining HDAC inhibitors with paclitaxel. Class II/(I) HDAC inhibitors upregulate RhoB and BIMEL, promoting antitumor synergy, unlike class I inhibitors that upregulate only p21.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Anaplastic thyroid carcinoma (ATC) is aggressive with poor prognosis due to genomic instability.
  • RhoB upregulation is a potential therapeutic target, showing synergy with paclitaxel.
  • Histone deacetylase 1 (HDAC1) suppresses RhoB transcriptionally.

Purpose of the Study:

  • To investigate other HDACs, specifically HDAC6, as RhoB repressors.
  • To identify the optimal histone deacetylase inhibitor (HDACi) for synergistic effects with paclitaxel.
  • To elucidate the downstream signaling pathways of RhoB influenced by different HDAC isoforms.

Main Methods:

  • Utilized isoform-selective HDAC inhibitors and short hairpin RNAs (shRNAs).
  • Analyzed RhoB's downstream signaling partners, including p21 and BIMEL.
  • Assessed the impact of RhoB and its downstream effectors on synergy with paclitaxel.

Main Results:

  • Identified HDAC6 as a novel repressor of RhoB.
  • Demonstrated that RhoB signaling is isoform-dependent: class I HDACi leads to p21 upregulation and cytostasis, while class II/(I) HDACi leads to BIMEL upregulation and apoptosis.
  • Found that synergy with paclitaxel requires RhoB and BIMEL, and is blocked by p21 upregulation.

Conclusions:

  • Class II/(I) HDAC inhibitors (belinostat, vorinostat) combined with paclitaxel show therapeutic promise for ATC.
  • This synergy is mediated by HDAC6 inhibition, RhoB upregulation, and subsequent BIMEL induction.
  • Understanding the bifurcated regulation of RhoB offers mechanistic insights for optimizing cancer therapy.

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