Chemoproteomics validates selective targeting of Plasmodium M1 alanyl aminopeptidase as an antimalarial strategy

Elife. 2024 Jul 8:13:RP92990. doi: 10.7554/eLife.92990.

Abstract

New antimalarial drug candidates that act via novel mechanisms are urgently needed to combat malaria drug resistance. Here, we describe the multi-omic chemical validation of Plasmodium M1 alanyl metalloaminopeptidase as an attractive drug target using the selective inhibitor, MIPS2673. MIPS2673 demonstrated potent inhibition of recombinant Plasmodium falciparum (PfA-M1) and Plasmodium vivax (PvA-M1) M1 metalloaminopeptidases, with selectivity over other Plasmodium and human aminopeptidases, and displayed excellent in vitro antimalarial activity with no significant host cytotoxicity. Orthogonal label-free chemoproteomic methods based on thermal stability and limited proteolysis of whole parasite lysates revealed that MIPS2673 solely targets PfA-M1 in parasites, with limited proteolysis also enabling estimation of the binding site on PfA-M1 to within ~5 Å of that determined by X-ray crystallography. Finally, functional investigation by untargeted metabolomics demonstrated that MIPS2673 inhibits the key role of PfA-M1 in haemoglobin digestion. Combined, our unbiased multi-omic target deconvolution methods confirmed the on-target activity of MIPS2673, and validated selective inhibition of M1 alanyl metalloaminopeptidase as a promising antimalarial strategy.

Keywords: P. falciparum; aminopeptidase; biochemistry; chemical biology; chemoproteomics; drug target; infectious disease; malaria; mass spectrometry; metabolomics; microbiology.

MeSH terms

  • Aminopeptidases / antagonists & inhibitors
  • Aminopeptidases / chemistry
  • Aminopeptidases / metabolism
  • Antimalarials* / chemistry
  • Antimalarials* / pharmacology
  • Humans
  • Plasmodium falciparum* / drug effects
  • Plasmodium falciparum* / enzymology
  • Plasmodium vivax* / drug effects
  • Plasmodium vivax* / enzymology
  • Proteomics* / methods
  • Protozoan Proteins* / antagonists & inhibitors
  • Protozoan Proteins* / chemistry
  • Protozoan Proteins* / metabolism

Substances

  • Antimalarials
  • Protozoan Proteins
  • Aminopeptidases