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Updated: May 26, 2026

Assays for Validating Histone Acetyltransferase Inhibitors
Published on: August 6, 2020
Role for Class I histone deacetylases in multidrug resistance
Yichun Xu1, Zijing Jiang, Peihao Yin
1State Key Laboratory of Bioreactor Engineering & Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, #268, 130 Meilong Road, Shanghai 200237, PR China.
Class I histone deacetylases (HDAC1 and HDAC2) enhance anti-cancer drug sensitivity by reducing multidrug resistance (MDR) proteins. These HDACs regulate P-glycoprotein (P-gp) expression via chromatin remodeling.
Area of Science:
- Molecular Biology
- Cancer Research
- Epigenetics
Background:
- Histone deacetylase (HDAC) inhibitors are linked to multidrug resistance (MDR).
- The precise role of Class I HDACs in MDR regulation remains unclear.
- Understanding HDAC mechanisms is crucial for improving chemotherapy efficacy.
Purpose of the Study:
- To elucidate the molecular mechanisms by which HDAC1 and HDAC2 influence MDR.
- To investigate the role of HDAC1 and HDAC2 in regulating the expression of drug efflux pumps.
- To determine how HDAC inhibition affects chromatin structure and transcription factor binding in the context of MDR.
Main Methods:
- Analysis of HDAC1 and HDAC2 expression levels in relation to drug sensitivity.
- Quantitative assessment of P-gp, MRP1, and MRP2 expression.
- Chromatin immunoprecipitation assays to study transcription factor recruitment and histone acetylation.
- Investigation of Sp1 acetylation and its role in P-gp regulation.
Main Results:
- HDAC1 and HDAC2 enhance chemosensitivity by decreasing P-gp, MRP1, and MRP2 expression.
- Dissociation of HDAC1/HDAC2 from the P-gp promoter leads to increased hyperacetylation of histone H3.
- HDAC inhibition promotes p300, PCAF, and NF-Y recruitment to the P-gp promoter via Sp1 acetylation.
Conclusions:
- HDAC1 and HDAC2 play a critical role in modulating MDR by regulating P-gp expression.
- Dynamic changes in chromatin structure and transcription factor association mediated by HDAC1/2 are key to P-gp regulation.
- Targeting HDAC1 and HDAC2 may represent a viable strategy to overcome MDR in cancer therapy.
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