1. Academic Validation
  2. Investigating the phosphinic acid tripeptide mimetic DG013A as a tool compound inhibitor of the M1-aminopeptidase ERAP1

Investigating the phosphinic acid tripeptide mimetic DG013A as a tool compound inhibitor of the M1-aminopeptidase ERAP1

  • Bioorg Med Chem Lett. 2021 Jun 15;42:128050. doi: 10.1016/j.bmcl.2021.128050.
Birgit Wilding 1 A Elisa Pasqua 1 Nicola E A Chessum 1 Olivier A Pierrat 1 Tamas Hahner 1 Kathy Tomlin 1 Erald Shehu 1 Rosemary Burke 1 G Meirion Richards 1 Bradleigh Whitton 1 Esther N Arwert 1 Arjun Thapaliya 2 Ramya Salimraj 2 Rob van Montfort 2 Agi Skawinska 1 Angela Hayes 1 Florence Raynaud 1 Rajesh Chopra 1 Keith Jones 1 Gary Newton 1 Matthew D Cheeseman 3
Affiliations

Affiliations

  • 1 Cancer Research UK Cancer Therapeutics Unit, The Institute of Cancer Research, London SW7 3RP, UK.
  • 2 Cancer Research UK Cancer Therapeutics Unit, The Institute of Cancer Research, London SW7 3RP, UK; Division of Structural Biology, The Institute of Cancer Research, London SW7 3RP, UK.
  • 3 Cancer Research UK Cancer Therapeutics Unit, The Institute of Cancer Research, London SW7 3RP, UK. Electronic address: [email protected].
Abstract

ERAP1 is a zinc-dependent M1-aminopeptidase that trims lipophilic Amino acids from the N-terminus of Peptides. Owing to its importance in the processing of antigens and regulation of the adaptive immune response, dysregulation of the highly polymorphic ERAP1 has been implicated in autoimmune disease and Cancer. To test this hypothesis and establish the role of ERAP1 in these disease areas, high affinity, cell permeable and selective chemical probes are essential. DG013A 1, is a phosphinic acid tripeptide mimetic inhibitor with reported low nanomolar affinity for ERAP1. However, this chemotype is a privileged structure for binding to various metal-dependent peptidases and contains a highly charged phosphinic acid moiety, so it was unclear whether it would display the high selectivity and passive permeability required for a chemical probe. Therefore, we designed a new stereoselective route to synthesize a library of DG013A 1 analogues to determine the suitability of this compound as a cellular chemical probe to validate ERAP1 as a drug discovery target.

Keywords

Chemical probe; DG013A; ERAP1; M1-aminopeptidase; Permeability.

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