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

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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