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To Target or Not to Target Schistosoma mansoni Cyclic Nucleotide Phosphodiesterase 4A?

  • Yang Zheng
  • , Susanne Schroeder
  • , Georgi K. Kanev
  • , Sanaa S. Botros
  • , Samia William
  • , Abdel Nasser A. Sabra
  • , Louis Maes
  • , Guy Caljon
  • , Carmen Gil
  • , Ana Martinez
  • , Irene G. Salado
  • , Koen Augustyns
  • , Ewald Edink
  • , Maarten Sijm
  • , Erik de Heuvel
  • , Iwan J.P. de Esch
  • , Tiffany van der Meer
  • , Marco Siderius
  • , Geert Jan Sterk
  • , David Brown
  • Rob Leurs*
*Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Schistosomiasis is a neglected tropical disease with high morbidity. Recently, the Schistosoma mansoni phosphodiesterase SmPDE4A was suggested as a putative new drug target. To support SmPDE4A targeted drug discovery, we cloned, isolated, and biochemically characterized the full-length and catalytic domains of SmPDE4A. The enzymatically active catalytic domain was crystallized in the apo-form (PDB code: 6FG5) and in the cAMP- and AMP-bound states (PDB code: 6EZU). The SmPDE4A catalytic domain resembles human PDE4 more than parasite PDEs because it lacks the parasite PDE-specific P-pocket. Purified SmPDE4A proteins (full-length and catalytic domain) were used to profile an in-house library of PDE inhibitors (PDE4NPD toolbox). This screening identified tetrahydrophthalazinones and benzamides as potential hits. The PDE inhibitor NPD-0001 was the most active tetrahydrophthalazinone, whereas the approved human PDE4 inhibitors roflumilast and piclamilast were the most potent benzamides. As a follow-up, 83 benzamide analogs were prepared, but the inhibitory potency of the initial hits was not improved. Finally, NPD-0001 and roflumilast were evaluated in an in vitro anti-S. mansoni assay. Unfortunately, both SmPDE4A inhibitors were not effective in worm killing and only weakly affected the egg-laying at high micromolar concentrations. Consequently, the results with these SmPDE4A inhibitors strongly suggest that SmPDE4A is not a suitable target for anti-schistosomiasis therapy.

Original languageEnglish
Article number6817
Pages (from-to)1-18
Number of pages18
JournalInternational Journal of Molecular Sciences
Volume24
Issue number7
DOIs
Publication statusPublished - 1 Apr 2023

Bibliographical note

This article belongs to the Special Issue: Role of Phosphodiesterase in Biology and Pathology 2.0. Published online: 6 April 2023.

Publisher Copyright:
© 2023 by the authors.

Funding

This work was supported by the European Commission 7th Framework Program FP7-HEALTH-2013-INNOVATION-1 under project reference 602666 “Parasite-specific cyclic nucleotide phosphodiesterase inhibitors to target Neglected Parasitic Diseases” (PDE4NPD). Y.Z. acknowledges the China Scholarship Council (CSC) for funding (Grant No. 201506220185). LMPH is a partner of the Excellence Centre ‘Infla-Med’ (www.uantwerpen.be/infla-med (accessed on 31 March 2023)) and participates in COST Action CA21111.

FundersFunder number
European Commission 7th Framework Program FP7-HEALTH-2013-INNOVATION-1PDE4NPD, 602666
European Cooperation in Science and TechnologyCA21111
European Cooperation in Science and Technology
China Scholarship Council201506220185
China Scholarship Council

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • drug target
    • phosphodiesterase
    • Schistosoma mansoni

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