4.7 Article

Structure-Activity Relationship in Pyrazolo[4,3-c]pyridines, First Inhibitors of PEX14-PEX5 Protein-Protein Interaction with Trypanocidal Activity

期刊

JOURNAL OF MEDICINAL CHEMISTRY
卷 63, 期 2, 页码 847-879

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jmedchem.9b01876

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资金

  1. National Science Center, Poland [UMO-2018/31/B/NZ7/02089, 2017/26/M/NZ1/00797]
  2. European Union's Framework Programme for Research and Innovation Horizon 2020 (2014-2020) under the Marie Sklodowska-Curie grant [675555]
  3. TEAM TECH CORE FACILITY grant from the Foundation for Polish Science [2017-4/6]
  4. Deutsche Forschungsgemeinschaft (DFG) [FOR190S]
  5. FoRUM grants of the Ruhr-University Bochum [F883-2016, F913-2017]
  6. Wroclaw Centre of Biotechnology program, The Leading National Research Centre (KNOW)

向作者/读者索取更多资源

Trypanosoma protists are pathogens leading to a spectrum of devastating infectious diseases. The range of available chemotherapeutics against Trypanosoma is limited, and the existing therapies are partially ineffective and cause serious adverse effects. Formation of the PEX14-PEX5 complex is essential for protein import into the parasites' glycosomes. This transport is critical for parasite metabolism and failure leads to mislocalization of glycosomal enzymes, with fatal consequences for the parasite. Hence, inhibiting the PEX14-PEX5 protein protein interaction (PPI) is an attractive way to affect multiple metabolic pathways. Herein, we have used structure-guided computational screening and optimization to develop the first line of compounds that inhibit PEX14-PEX5 PPI. The optimization was driven by several X-ray structures, NMR binding data, and molecular dynamics simulations. Importantly, the developed compounds show significant cellular activity against Trypanosoma, including the human pathogen Trypanosoma brucei gambiense and Trypanosoma cruzi parasites.

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