HDAC6 inhibition suppresses chondrosarcoma by restoring the expression of primary cilia

Wei Xiang1, Fengjing Guo1, Weiting Cheng2

  • 1Department of Orthopedics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei 430030, P.R. China.

Oncology Reports
|June 7, 2017
PubMed

Insights

Inhibiting histone deacetylases 6 (HDAC6) restores primary cilia in chondrosarcoma cells. This approach suppresses tumor cell proliferation and invasion, offering a potential therapeutic strategy for bone cancer.

Area of Science:

  • Oncology
  • Cell Biology
  • Biochemistry

Background:

  • Chondrosarcoma, a bone tumor, is characterized by cartilage matrix secretion.
  • This cancer type lacks extracellular sensor primary cilia, crucial for cellular communication.
  • Histone deacetylases 6 (HDAC6) is implicated in cellular processes and cancer progression.

Purpose of the Study:

  • To investigate targeting HDAC6 as a therapeutic strategy for chondrosarcoma.
  • To explore the role of HDAC6 in regulating primary cilia assembly in chondrosarcoma.
  • To assess the impact of HDAC6 inhibition on chondrosarcoma cell proliferation and invasion.

Main Methods:

  • Inhibition of HDAC6 using Tubastatin A and small interfering RNA (siRNA).
  • Evaluation of cell viability and invasion using Transwell assays.
  • Detection of primary cilia and related proteins, including IFT88 and acetylated α-tubulin.

Main Results:

  • Abnormal expression of HDAC6 and IFT88 observed in chondrosarcoma tissues.
  • HDAC6 inhibition reduced chondrosarcoma cell proliferation and invasion in a dose- and time-dependent manner.
  • HDAC6 downregulation restored primary cilia assembly, evidenced by increased IFT88 and acetylated α-tubulin levels.

Conclusions:

  • Targeting HDAC6 restores primary cilia assembly in chondrosarcoma.
  • HDAC6 inhibition presents a potential therapeutic approach for chondrosarcoma by suppressing tumor growth and invasion.
  • The Aurora A-HDAC6 cascade is involved in primary cilia regulation via α-tubulin deacetylation.

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