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A novel gene expression analytics-based approach to structure aided design of rexinoids for development as
Bentley J Hanish1, Jennifer F Hackney Price1, Ichiro Kaneko2
1New College of Interdisciplinary Arts and Sciences, Arizona State University, Glendale, AZ, United States.
Abstract:
Rexinoids are powerful ligands that bind to retinoid-X-receptors (RXRs) and show great promise as therapeutics for a wide range of diseases, including cancer. However, only one rexinoid, bexarotene (Targretin TM) has been successfully transitioned from the bench to the clinic and used to treat cutaneous T-cell lymphoma (CTCL). Our goal is to develop novel potent rexinoids with a less untoward side effect profile than bexarotene. To this end, we have synthesized a wide array of rexinoids with EC50 values and biological activity similar to bexarotene. In order to determine their suitability for additional downstream analysis, and to identify potential candidate analogs for clinical translation, we treated human CTCL cells in culture and employed microarray technology to assess gene expression profiles. We analyzed twelve rexinoids and found they could be stratified into three distinct categories based on their gene expression: similar to bexarotene, moderately different from bexarotene, and substantially different from bexarotene. Surprisingly, small changes in the structure of the bexarotene parent compound led to marked differences in gene expression profiles. Furthermore, specific analogs diverged markedly from our hypothesis in expression of genes expected to be important for therapeutic promise. However, promoter analysis of genes whose expression was analyzed indicates general regulatory trends along structural frameworks. Our results suggest that certain structural motifs, particularly the basic frameworks found in analog 4 and analog 9, represent important starting points to exploit in generating additional rexinoids for future study and therapeutic applications.
Insights
Novel rexinoids targeting retinoid-X-receptors (RXRs) show therapeutic promise for cancer. Gene expression analysis stratified twelve analogs into three groups, identifying promising structural motifs for future drug development.
Area of Science:
- Pharmacology
- Molecular Biology
- Oncology
Background:
- Rexinoids are ligands for retinoid-X-receptors (RXRs) with therapeutic potential in diseases like cancer.
- Bexarotene is the only approved rexinoid, used for cutaneous T-cell lymphoma (CTCL).
- There is a need for novel rexinoids with improved efficacy and reduced side effects compared to bexarotene.
Purpose of the Study:
- To synthesize and evaluate novel rexinoid analogs with potency similar to bexarotene.
- To assess gene expression profiles of these analogs in human CTCL cells.
- To identify potential rexinoid candidates for clinical translation and further study.
Main Methods:
- Synthesis of a diverse library of rexinoid analogs.
- Treatment of human CTCL cells with twelve rexinoid analogs.
- Microarray analysis to assess genome-wide gene expression profiles.
- Bioinformatic analysis including promoter analysis.
Main Results:
- Rexinoid analogs were categorized into three distinct gene expression profiles: similar, moderately different, and substantially different from bexarotene.
- Minor structural modifications to bexarotene resulted in significant alterations in gene expression.
- Specific analogs showed unexpected gene expression patterns, diverging from initial hypotheses.
- Promoter analysis revealed general regulatory trends linked to specific structural frameworks.
Conclusions:
- Certain structural motifs, exemplified by analogs 4 and 9, are promising starting points for developing new rexinoids.
- Gene expression profiling is a valuable tool for stratifying rexinoids and guiding drug development.
- Further investigation of these structural motifs may lead to novel therapeutic agents for cancer and other diseases.
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