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Quantitative high-throughput screening assays for the discovery and development of SIRPα-CD47 interaction inhibitors
Thomas W Miller1,2, Joshua D Amason1,2, Elsa D Garcin3
1Paradigm Shift Therapeutics LLC, Rockville, Maryland, United States of America.
Abstract:
CD47 is an immune checkpoint molecule that downregulates key aspects of both the innate and adaptive anti-tumor immune response via its counter receptor SIRPα, and it is expressed at high levels in a wide variety of tumor types. This has led to the development of biologics that inhibit SIRPα engagement including humanized CD47 antibodies and a soluble SIRPα decoy receptor that are currently undergoing clinical trials. Unfortunately, toxicological issues, including anemia related to on-target mechanisms, are barriers to their clinical advancement. Another potential issue with large biologics that bind CD47 is perturbation of CD47 signaling through its high-affinity interaction with the matricellular protein thrombospondin-1 (TSP1). One approach to avoid these shortcomings is to identify and develop small molecule molecular probes and pretherapeutic agents that would (1) selectively target SIRPα or TSP1 interactions with CD47, (2) provide a route to optimize pharmacokinetics, reduce on-target toxicity and maximize tissue penetration, and (3) allow more flexible routes of administration. As the first step toward this goal, we report the development of an automated quantitative high-throughput screening (qHTS) assay platform capable of screening large diverse drug-like chemical libraries to discover novel small molecules that inhibit CD47-SIRPα interaction. Using time-resolved Förster resonance energy transfer (TR-FRET) and bead-based luminescent oxygen channeling assay formats (AlphaScreen), we developed biochemical assays, optimized their performance, and individually tested them in small-molecule library screening. Based on performance and low false positive rate, the LANCE TR-FRET assay was employed in a ~90,000 compound library qHTS, while the AlphaScreen oxygen channeling assay served as a cross-validation orthogonal assay for follow-up characterization. With this multi-assay strategy, we successfully eliminated compounds that interfered with the assays and identified five compounds that inhibit the CD47-SIRPα interaction; these compounds will be further characterized and later disclosed. Importantly, our results validate the large library qHTS for antagonists of CD47-SIRPα interaction and suggest broad applicability of this approach to screen chemical libraries for other protein-protein interaction modulators.
Insights
Researchers developed a high-throughput screening assay to find small molecules that block the CD47-SIRPα interaction, overcoming limitations of current biologic therapies for cancer immunotherapy. This approach identifies promising drug candidates with improved safety and efficacy profiles.
Area of Science:
- Immunology and Cancer Therapeutics
- Drug Discovery and Development
Background:
- CD47 is an immune checkpoint molecule overexpressed in many tumors, inhibiting anti-tumor immune responses via SIRPα interaction.
- Current CD47-targeting biologics face toxicological challenges, including anemia, and potential signaling pathway disruptions.
- Small molecules offer advantages in pharmacokinetics, toxicity, tissue penetration, and administration routes for targeting CD47 interactions.
Purpose of the Study:
- To develop an automated quantitative high-throughput screening (qHTS) platform for discovering small molecules that inhibit the CD47-SIRPα interaction.
- To establish robust biochemical assay formats for screening large chemical libraries against CD47-SIRPα engagement.
- To identify novel small molecule inhibitors of CD47-SIRPα interaction as potential pretherapeutic agents.
Main Methods:
- Development and optimization of time-resolved Förster resonance energy transfer (TR-FRET) and AlphaScreen bead-based assays.
- Quantitative high-throughput screening (qHTS) of a ~90,000 compound library using the LANCE TR-FRET assay.
- Orthogonal validation of hits using the AlphaScreen assay to ensure specificity and eliminate false positives.
Main Results:
- Successfully implemented a multi-assay strategy combining TR-FRET and AlphaScreen for robust screening.
- Identified five novel small molecules that inhibit the CD47-SIRPα interaction from the screened chemical library.
- Validated the utility of large-library qHTS for discovering modulators of protein-protein interactions like CD47-SIRPα.
Conclusions:
- The developed qHTS platform is effective for identifying small molecule inhibitors of the CD47-SIRPα axis.
- This approach provides a promising strategy to develop safer and more effective cancer immunotherapies by overcoming biologic limitations.
- The screening methodology has broad applicability for discovering modulators of other critical protein-protein interactions.
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