Picomolar Inhibition of Plasmepsin V, an Essential Malaria Protease, Achieved Exploiting the Prime Region
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Aspartyl Proteinases of Eukaryotic Microbial Pathogens: From Eating to HeatingProteases as antimalarial targets: strategies for genetic, chemical, and therapeutic validation.Correction: Picomolar Inhibition of Plasmepsin V, an Essential Malaria Protease, Achieved Exploiting the Prime Region.Patent Highlights June-July 2017.Modeling and resistant alleles explain the selectivity of antimalarial compound 49c towards apicomplexan aspartyl proteases.
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Picomolar Inhibition of Plasmepsin V, an Essential Malaria Protease, Achieved Exploiting the Prime Region
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Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
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Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
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Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
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label
Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
@ast
Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
@en
Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
@nl
prefLabel
Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
@ast
Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
@en
Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
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Picomolar Inhibition of Plasme ...... ed Exploiting the Prime Region
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Alessandro Pedretti
Andrea Pancotti
Corinna Galli
Luca Gambini
Luca Rizzi
Mario Carucci
Orazio Taglialatela-Scafati
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10.1371/JOURNAL.PONE.0142509
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P577
2015-01-01T00:00:00Z