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Updated: Aug 11, 2026

Drug-induced Sensitization of Adenylyl Cyclase: Assay Streamlining and Miniaturization for Small Molecule and siRNA Screening Applications
Published on: January 27, 2014
Cyclic nucleotide signalling: a molecular approach to drug discovery for Alzheimer's disease
I McPhee1, L C D Gibson, J Kewney
1Scottish Biomedical, Todd Campus, West of Scotland Science Park, Glasgow G20 OXA, UK. ian.mcphee@scottish-biomedical.com
Abstract:
The EPAC (exchange protein directly activated by cAMP) proteins are GEFs (guanine nucleotide-exchange factors) that activate Rap GTPases upon binding to cAMP. The involvement of these proteins in a number of diseases, neurodegenerative, inflammatory and metabolic, has started to show how they may prove to be important targets for therapeutic intervention. We first became interested in EPAC when we discovered that the expression levels of both EPAC1 and EPAC2 were altered in those regions of the brain associated with Alzheimer's disease [McPhee, Breslin, Kewney, MacKenzie, Cooreman, Gibson and Hammond (2004) International Patent number WO 2004/096199 A2]. It was known that compounds could be designed to be selective for EPAC over PKA (protein kinase A); however, these compounds were all based around the core structure of cAMP. We decided to screen a small compound library (10000 compounds) to investigate the possibility of developing a compound series outside of the cAMP structure. We subsequently developed a novel, high-throughput screen based on the displacement of [3H]cAMP from the EPAC cAMP-binding site and identified small molecule hits from the Scottish Biomedical Lead Generation Library. These compounds selectively bind to the cAMP-binding sites of EPAC1 and EPAC2 and are structurally dissimilar to cAMP. They have similar affinities for both EPAC1 and EPAC2 and have a high degree of specificity for EPAC over PKA. We believe that these compounds provide a valuable starting point for a drug optimization programme.
Insights
Researchers identified novel small molecules targeting EPAC proteins, crucial in diseases like Alzheimer's. These compounds, structurally different from cAMP, offer a new avenue for therapeutic drug development.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- EPAC (exchange protein directly activated by cAMP) proteins are guanine nucleotide-exchange factors (GEFs) that activate Rap GTPases.
- EPAC1 and EPAC2 expression levels are altered in brain regions affected by Alzheimer's disease.
- EPAC proteins are implicated in neurodegenerative, inflammatory, and metabolic diseases, suggesting therapeutic potential.
Purpose of the Study:
- To screen for novel small molecules that selectively bind to EPAC proteins.
- To identify compounds structurally dissimilar to cAMP for EPAC targeting.
- To establish a foundation for drug optimization programs targeting EPAC.
Main Methods:
- Screening of a 10,000-compound library.
- Development of a novel high-throughput screen using [3H]cAMP displacement.
- Assessing compound affinity and specificity for EPAC1 and EPAC2 over PKA (protein kinase A).
Main Results:
- Identification of small molecule hits from the Scottish Biomedical Lead Generation Library.
- These compounds selectively bind to the cAMP-binding sites of EPAC1 and EPAC2.
- Compounds exhibit similar affinities for EPAC1 and EPAC2 and high specificity over PKA.
Conclusions:
- Novel small molecules targeting EPAC proteins have been identified.
- These compounds are structurally distinct from cAMP and highly specific for EPAC.
- The identified compounds represent a valuable starting point for EPAC-targeted drug discovery programs.
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