Hydroxamic Acids Immobilized on Resins (HAIRs): Synthesis of Dual-Targeting HDAC Inhibitors and HDAC Degraders (PROTACs).
Laura SinatraJan J BandolikMartin RoatschMelf SönnichsenClara T SchoederAlexandra HamacherAndrea SchölerArndt BorkhardtJens MeilerSanil BhatiaMatthias U KassackFinn K HansenPublished in: Angewandte Chemie (International ed. in English) (2020)
Inhibition of more than one cancer-related pathway by multi-target agents is an emerging approach in modern anticancer drug discovery. Here, based on the well-established synergy between histone deacetylase inhibitors (HDACi) and alkylating agents, we present the discovery of a series of alkylating HDACi using a pharmacophore-linking strategy. For the parallel synthesis of the target compounds, we developed an efficient solid-phase-supported protocol using hydroxamic acids immobilized on resins (HAIRs) as stable and versatile building blocks for the preparation of functionalized HDACi. The most promising compound, 3 n, was significantly more active in apoptosis induction, activation of caspase 3/7, and formation of DNA damage (γ-H2AX) than the sum of the activities of either active principle alone. Furthermore, to demonstrate the utility of our preloaded resins, the HAIR approach was successfully extended to the synthesis of a proof-of-concept proteolysis-targeting chimera (PROTAC), which efficiently degrades histone deacetylases.
Keyphrases
- histone deacetylase
- drug discovery
- dna damage
- oxidative stress
- cell death
- randomized controlled trial
- cancer therapy
- small molecule
- dna methylation
- endoplasmic reticulum stress
- ionic liquid
- high throughput
- quantum dots
- cell cycle arrest
- dna repair
- gene expression
- high resolution
- induced apoptosis
- single cell
- liquid chromatography