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Simultaneous Measurement of HDAC1 and HDAC6 Activity in HeLa Cells Using UHPLC-MS
Published on: August 10, 2017
Selective molecular inhibition of the HDAC6 ZnF-UBP binding domain impairs multiple myeloma cell function
Rafael Rincón1,2,3, Isabel F Coira1,2,3, Antoine Richieu4,5
1School of Pharmaceutical Sciences, University of Geneva, Geneva, Switzerland.
Abstract:
Multiple myeloma is a plasma cell malignancy with a poor prognosis despite the recent development of new therapeutic options. Histone deacetylase 6 (HDAC6) is overexpressed in multiple myeloma cells and may be involved in the acquisition of resistance to conventional anti-proteasome treatments. In addition to displaying a deacetylase catalytic activity, HDAC6 plays an essential role in the regulation of autophagy and cell death by recognizing ubiquitinated motifs from misfolded proteins through its C-terminal ZnF-UBP binding domain. These defective proteins are sent to the aggresome to facilitate their degradation by autophagy. Here, we explore the role of the ZnF-UBP binding domain of HDAC6 in the function of multiple myeloma cells. A non-functional ZnF-UBP domain containing a 2-residue mutation in the binding site was designed, and the absence of ubiquitin binding was confirmed in a cell-free assay. Molecular docking simulations and electrostatic calculations revealed a significant decrease in the electrostatic potential of the mutated peptide, which is crucial for the stability of the complex with ubiquitin. A multiple myeloma cell line containing the non-functional ZnF-UBP domain was then engineered. Although the deacetylase activity of HDAC6 was maintained in these cells, they showed reduced cell growth, impaired aggresome formation, and a dysregulated gene expression profile that was more pronounced than cells entirely deficient in HDAC6. These results indicate that a non-functional ZnF-UBP binding domain impacts the function of multiple myeloma cells. Based on these findings, a series of quinazolinylpropanoic acid derivatives was synthesized to explore the inhibitory activity of small molecules to this domain. We propose that ZnF-UBP binding domain inhibitors should be further evaluated as potential therapeutic agents in multiple myeloma.
Insights
Targeting the ZnF-UBP binding domain of histone deacetylase 6 (HDAC6) inhibits multiple myeloma cell growth. Inhibiting this domain, crucial for protein degradation, offers a new therapeutic strategy for this plasma cell malignancy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Multiple myeloma is a plasma cell cancer with poor outcomes.
- Histone deacetylase 6 (HDAC6) is overexpressed in multiple myeloma and linked to treatment resistance.
- HDAC6 regulates autophagy and cell death via its ZnF-UBP domain, which binds ubiquitinated proteins.
Purpose of the Study:
- To investigate the role of HDAC6's ZnF-UBP binding domain in multiple myeloma cell function.
- To assess the impact of a non-functional ZnF-UBP domain on multiple myeloma cells.
- To explore small molecule inhibitors targeting the ZnF-UBP domain for therapeutic potential.
Main Methods:
- Designed a mutated ZnF-UBP domain with impaired ubiquitin binding.
- Utilized molecular docking and electrostatic calculations to analyze binding.
- Engineered multiple myeloma cells with the non-functional ZnF-UBP domain.
- Synthesized quinazolinylpropanoic acid derivatives as potential inhibitors.
Main Results:
- A mutated ZnF-UBP domain showed significantly reduced electrostatic potential for ubiquitin binding.
- Engineered cells with a non-functional ZnF-UBP domain exhibited reduced growth and impaired aggresome formation.
- Gene expression profiles were dysregulated in cells with the non-functional domain.
- HDAC6's deacetylase activity remained intact despite the mutation.
Conclusions:
- The ZnF-UBP binding domain of HDAC6 is critical for multiple myeloma cell function.
- Targeting the ZnF-UBP domain, rather than just deacetylase activity, impacts cell growth and protein degradation pathways.
- Small molecule inhibitors targeting the ZnF-UBP domain represent a promising therapeutic strategy for multiple myeloma.
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