Sabine Ottilie

Affiliations: 
Salk and Harvard University 
Area:
yeast; cell cycle; apoptosis; kinases; phosphatases; cancer; malaria
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"Sabine Ottilie"
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Publications

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Vanaerschot M, Murithi JM, Pasaje CFA, et al. (2020) Inhibition of Resistance-Refractory P. falciparum Kinase PKG Delivers Prophylactic, Blood Stage, and Transmission-Blocking Antiplasmodial Activity. Cell Chemical Biology
LaMonte GM, Rocamora F, Marapana DS, et al. (2020) Pan-active imidazolopiperazine antimalarials target the Plasmodium falciparum intracellular secretory pathway. Nature Communications. 11: 1780
Abraham M, Gagaring K, Marino ML, et al. (2020) Probing the Open Global Health Chemical Diversity Library for multistage-active starting points for next-generation antimalarials. Acs Infectious Diseases
Singh S, El-Sakkary N, Skinner DE, et al. (2020) Synthesis and Bioactivity of Phthalimide Analogs as Potential Drugs to Treat Schistosomiasis, a Neglected Disease of Poverty. Pharmaceuticals (Basel, Switzerland). 13
Murithi JM, Owen ES, Istvan ES, et al. (2019) Combining Stage Specificity and Metabolomic Profiling to Advance Antimalarial Drug Discovery. Cell Chemical Biology
Mandt REK, Lafuente-Monasterio MJ, Sakata-Kato T, et al. (2019) In vitro selection predicts malaria parasite resistance to dihydroorotate dehydrogenase inhibitors in a mouse infection model. Science Translational Medicine. 11
Winzeler EA, Ottilie S. (2019) The proteasome as a target: How not tidying up can have toxic consequences for parasitic protozoa. Proceedings of the National Academy of Sciences of the United States of America. 116: 10198-10200
Antonova-Koch Y, Meister S, Abraham M, et al. (2018) Open-source discovery of chemical leads for next-generation chemoprotective antimalarials. Science (New York, N.Y.). 362
Xie SC, Gillett DL, Spillman NJ, et al. (2018) Target Validation and Identification of Novel Boronate Inhibitors of the Plasmodium falciparum Proteasome. Journal of Medicinal Chemistry
Ottilie S, Goldgof GM, Cheung AL, et al. (2018) Two inhibitors of yeast plasma membrane ATPase 1 (ScPma1p): toward the development of novel antifungal therapies. Journal of Cheminformatics. 10: 6
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