Insights from structure-activity relationships and the binding mode of peptidic α-ketoamide inhibitors of the malaria drug target subtilisin-like SUB1

Archive ouverte

Legru, Alice | Batista, Fernando | Puszko, Anna | Bouillon, Anthony | Maurel, Manon | Martinez, Mariano | Ejjoummany, Abdelaziz | Ortega Varga, Laura | Adler, Pauline | Mechaly, Ariel, E | Hadjadj, Margot | Sosnowski, Piotr | Hopfgartner, Gérard | Alzari, Pedro, M. | Blondel, Arnaud | Haouz, Ahmed | Barale, Jean-Christophe | Hernandez, Jean-François

Edité par CCSD ; Elsevier -

International audience. Plasmodium multi-resistance, including against artemisinin, seriously threatens malaria treatment and control. Hence, new drugs are urgently needed, ideally targeting different parasitic stages, which are not yet targeted by current drugs. The SUB1 protease is involved in both hepatic and blood stages due to its essential role in the egress of parasites from host cells, and, as potential new target, it would meet the above criteria. We report here the synthesis as well as the biological and structural evaluation of substrate-based a-ketoamide SUB1 pseudopeptidic inhibitors encompassing positions P4-P2'. By individually substituting each position of the reference compound 1 (MAM-117, Ac-Ile-Thr-Ala-AlaCO-Asp-Glu(Oall)-NH2), we better characterized the structural determinants for SUB1 binding. We first identified compound 8 with IC50 values of 50 and 570 nM against Pv-and PfSUB1, respectively (about 3.5-fold higher potency compared to 1). Compound 8 inhibited P. falciparum merozoite egress in culture by 37% at 100 µM. By increasing the overall hydrophobicity of the compounds, we could improve the PfSUB1 inhibition level and antiparasitic activity, as shown with compound 40 (IC50 values of 12 and 10 nM against Pv-and PfSUB1, respectively, IC50 value of 23 µM on P. falciparum merozoite egress). We also found that 8 was highly selective towards SUB1 over three mammalian serine peptidases, supporting the promising value of this compound. Finally, several crystal 3D-structures of SUB1-inhibitor complexes, including with 8, were solved at high resolution to decipher the binding mode of these compounds.

Suggestions

Du même auteur

Towards Improved Peptidic α‐Ketoamide Inhibitors of the Plasmodial Subtilisin‐Like SUB1: Exploration of N‐Terminal Extensions and Cyclic Constraints

Archive ouverte | Puszko, Anna | CCSD

International audience. After more than 15 years of decline, the Malaria epidemy has increased again since 2017, reinforcing the need to identify drug candidates active on new targets involved in at least two biolog...

Synthesis and evaluation of Plasmodium SUB1 inhibitors, a potential target for Malaria treatment

Archive ouverte | Legru, Alice | CCSD

International audience. Malaria is the most important human parasitic disease, with more than 200 million cases every year and 450 thousands deaths, 90% of them in Africa (WHO, 2018). Plasmodium multi-resistance, in...

3D structures of the Plasmodium vivax subtilisin-like drug target SUB1 reveal conformational changes to accommodate a substrate-derived α-ketoamide inhibitor

Archive ouverte | Martinez, Mariano | CCSD

International audience. The constant selection and propagation of multi-resistant Plasmodium sp. parasites require the identification of new antimalarial candidates involved in as-yet untargeted metabolic pathways. ...

Chargement des enrichissements...