Raphael Aponte
Bosch
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Publication
Featured researches published by Raphael Aponte.
Journal of Medicinal Chemistry | 2017
Geoffrey Schwertz; Matthias Witschel; Matthias Rottmann; Roger Bonnert; Ubolsree Leartsakulpanich; Penchit Chitnumsub; Aritsara Jaruwat; Wanwipa Ittarat; Anja Schäfer; Raphael Aponte; Susan A. Charman; Karen L. White; Abhijit Kundu; Surajit Sadhukhan; Mel Lloyd; Gail M. Freiberg; Myron Srikumaran; Marc Siggel; Adrian Zwyssig; Pimchai Chaiyen; François Diederich
Target-based approaches toward new antimalarial treatments are highly valuable to prevent resistance development. We report several series of pyrazolopyran-based inhibitors targeting the enzyme serine hydroxymethyltransferase (SHMT), designed to improve microsomal metabolic stability and to identify suitable candidates for in vivo efficacy evaluation. The best ligands inhibited Plasmodium falciparum (Pf) and Arabidopsis thaliana (At) SHMT in target assays and PfNF54 strains in cell-based assays with values in the low nanomolar range (3.2-55 nM). A set of carboxylate derivatives demonstrated markedly improved in vitro metabolic stability (t1/2 > 2 h). A selected ligand showed significant in vivo efficacy with 73% of parasitemia reduction in a mouse model. Five new cocrystal structures with PvSHMT were solved at 2.3-2.6 Å resolution, revealing a unique water-mediated interaction with Tyr63 at the end of the para-aminobenzoate channel. They also displayed the high degree of conformational flexibility of the Cys364-loop lining this channel.
Chemistry: A European Journal | 2017
Geoffrey Schwertz; Michelle S. Frei; Matthias Witschel; Matthias Rottmann; Ubolsree Leartsakulpanich; Penchit Chitnumsub; Aritsara Jaruwat; Wanwipa Ittarat; Anja Schäfer; Raphael Aponte; Nils Trapp; Kerstin Mark; Pimchai Chaiyen; François Diederich
Malaria remains a major threat to mankind due to the perpetual emergence of resistance against marketed drugs. Twenty-one pyrazolopyran-based inhibitors bearing terminal biphenyl, aryl sulfonamide, or aryl sulfone motifs were synthesized and tested towards serine hydroxymethyltransferase (SHMT), a key enzyme of the folate cycle. The best ligands inhibited Plasmodium falciparum (Pf) and Arabidopsis thaliana (At) SHMT in target, as well as PfNF54 strains in cell-based assays in the low nanomolar range (18-56 nm). Seven co-crystal structures with P. vivax (Pv) SHMT were solved at 2.2-2.6 Å resolution. We observed an unprecedented influence of the torsion angle of ortho-substituted biphenyl moieties on cell-based efficacy. The peculiar lipophilic character of the sulfonyl moiety was highlighted in the complexes with aryl sulfonamide analogues, which bind in their preferred staggered orientation. The results are discussed within the context of conformational preferences in the ligands.
Archive | 2014
Raphael Aponte; Stefan Tresch; Matthias Witschel; Jens Lerchl; Jill Marie Paulik; Chad Brommer; Tobias Seiser; Dario Massa
Archive | 2012
Helmut Kraus; Matthias Witschel; Thomas Seitz; Trevor William Newton; Rapado Liliana Parra; Raphael Aponte; Klaus Kreuz; Klaus Grossmann; Jens Lerchl; Richard Roger Evans
Archive | 2013
Matthias Witschel; Frank Stelzer; Johannes Hutzler; Tao Qu; Thomas Mietzner; Klaus Kreuz; Klaus Grossmann; Raphael Aponte; Hans Wolfgang Höffken; Frederick Calo; Thomas Ehrhardt; Anja Simon; Rapado Liliana Parra
Archive | 2014
Raphael Aponte; Stefan Tresch; Matthias Witschel; Jens Lerchl; Dario Massa; Tobias Seiser; Thomas Mietzner; Jill Marie Paulik; Chad Brommer
Archive | 2017
Anja Simon; Jens Lerchl; Johannes Hutzler; Matthias Witschel; Raphael Aponte; S. Luke Mankin; Stefan Tresch; Thomas Mietzner
Archive | 2017
Helmut Kraus; Jens Lerchl; Klaus Grossmann; Klaus Kreus; Liliana Parra Rapado; Matthias Witschel; Raphael Aponte; Richard Roger Evans; Thomas Seitz; Trevor William Newton
Archive | 2017
Jens Lerchl; Jill Marie Paulik; Johannes Hutzler; Liliana Parra Rapado; Matthias Witschel; Raphael Aponte; Stefan Tresch; Thomas Mietzner
Archive | 2017
Helmut Kraus; Jens Lerchl; Klaus Grossmann; Klaus Kreuz; Liliana Parra Rapado; Matthias Witschel; Raphael Aponte; Richard E Evans