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Published on: May 15, 2019
Bromodomain-Selective BET Inhibitors Are Potent Antitumor Agents against MYC-Driven Pediatric Cancer
P Jake Slavish1, Liying Chi1, Mi-Kyung Yun2
1Department of Chemical Biology and Therapeutics, St. Jude Children's Research Hospital, Memphis, Tennessee.
Abstract:
Inhibition of members of the bromodomain and extraterminal (BET) family of proteins has proven a valid strategy for cancer chemotherapy. All BET identified to date contain two bromodomains (BD; BD1 and BD2) that are necessary for recognition of acetylated lysine residues in the N-terminal regions of histones. Chemical matter that targets BET (BETi) also interact via these domains. Molecular and cellular data indicate that BD1 and BD2 have different biological roles depending upon their cellular context, with BD2 particularly associated with cancer. We have therefore pursued the development of BD2-selective molecules both as chemical probes and as potential leads for drug development. Here we report the structure-based generation of a novel series of tetrahydroquinoline analogs that exhibit >50-fold selectivity for BD2 versus BD1. This selective targeting resulted in engagement with BD-containing proteins in cells, resulting in modulation of MYC proteins and downstream targets. These compounds were potent cytotoxins toward numerous pediatric cancer cell lines and were minimally toxic to nontumorigenic cells. In addition, unlike the pan BETi (+)-JQ1, these BD2-selective inhibitors demonstrated no rebound expression effects. Finally, we report a pharmacokinetic-optimized, metabolically stable derivative that induced growth delay in a neuroblastoma xenograft model with minimal toxicity. We conclude that BD2-selective agents are valid candidates for antitumor drug design for pediatric malignancies driven by the MYC oncogene. SIGNIFICANCE: This study presents bromodomain-selective BET inhibitors that act as antitumor agents and demonstrates that these molecules have in vivo activity towards neuroblastoma, with essentially no toxicity.
Insights
Selective inhibition of bromodomain and extraterminal (BET) domain 2 (BD2) shows promise for pediatric cancers. New BD2-selective compounds are potent, non-toxic antitumor agents with in vivo efficacy in neuroblastoma models.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Bromodomain and extraterminal (BET) proteins are validated cancer targets.
- BET proteins possess two bromodomains (BD1 and BD2) with distinct biological roles.
- BD2 is particularly implicated in cancer, making it an attractive therapeutic target.
Purpose of the Study:
- To develop novel, BD2-selective inhibitors of BET proteins.
- To evaluate these inhibitors as potential therapeutic agents for MYC-driven pediatric cancers.
- To assess their efficacy and toxicity in preclinical models.
Main Methods:
- Structure-based drug design was employed to generate tetrahydroquinoline analogs.
- Selectivity for BD2 over BD1 was determined.
- Cellular engagement, MYC modulation, and cytotoxicity assays were performed.
- Pharmacokinetic optimization and in vivo efficacy studies in neuroblastoma xenografts were conducted.
Main Results:
- A novel series of tetrahydroquinoline analogs with >50-fold BD2 selectivity was synthesized.
- These compounds effectively engaged BET proteins, modulated MYC, and exhibited potent cytotoxicity against pediatric cancer cell lines.
- BD2-selective inhibitors showed no rebound expression effects, unlike pan-BET inhibitors.
- A pharmacokinetic-optimized derivative demonstrated significant neuroblastoma growth delay in vivo with minimal toxicity.
Conclusions:
- BD2-selective BET inhibitors represent a promising therapeutic strategy for MYC-driven pediatric malignancies.
- These agents offer a targeted approach with a favorable safety profile.
- Further development of BD2-selective compounds warrants consideration for cancer drug design.
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