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

4. 3D structures of the Plasmodium vivax subtilisin-like drug target SUB1 reveal conformational changes to accommodate a substrate-derived α-ketoamide inhibitor

5. A surrogate marker of piperaquine-resistant Plasmodium falciparum malaria: a phenotype–genotype association study

9. Prevalence and characterization of piperaquine, mefloquine and artemisinin derivatives triple-resistant Plasmodium falciparum in Cambodia

10. Human peroxiredoxin 6 is essential for malaria parasites and provides a host-based drug target

11. Prevalence and characterization of piperaquine, mefloquine and artemisinin derivatives triple-resistant Plasmodium falciparum in Cambodia.

12. Artemisinin-independent inhibitory activity of Artemisia sp. infusions against different Plasmodium stages including relapse-causing hypnozoites

13. A molecular marker of artemisinin-resistant Plasmodium falciparum malaria

14. Artemisinin-independent inhibitory activity ofArtemisiasp. infusions against differentPlasmodiumstages including relapse-causing hypnozoites

16. A molecular marker of artemisinin-resistant Plasmodium falciparum malaria

18. Artemisinin-independent inhibitory activity of Artemisia sp. infusions against different Plasmodium stages including relapse-causing hypnozoites.

20. In vitro activity of ferroquine against artemisinin-based combination therapy (ACT)-resistant Plasmodium falciparum isolates from Cambodia

22. CyProQuant-PCR: a real time RT-PCR technique for profiling human cytokines, based on external RNA standards, readily automatable for clinical use

23. A Worldwide Map ofPlasmodium falciparumK13-Propeller Polymorphisms

25. CyProQuant-PCR: a real time RT-PCR technique for profiling human cytokines, based on external RNA standards, readily automatable for clinical use

27. A novel Plasmodium-specific prodomain fold regulates the malaria drug target SUB1 subtilase

29. Whole Pichia pastoris Yeast Expressing Measles Virus Nucleoprotein as a Production and Delivery System to Multimerize Plasmodium Antigens

30. A molecular marker of artemisinin-resistant Plasmodium falciparum malaria

32. In Silico Screening on the Three-dimensional Model of the Plasmodium vivax SUB1 Protease Leads to the Validation of a Novel Anti-parasite Compound

33. Reduced Artemisinin Susceptibility of Plasmodium falciparum Ring Stages in Western Cambodia

34. Gene targeting demonstrates that the Plasmodium berghei subtilisin PbSUB2 is essential for red cell invasion and reveals spontaneous genetic recombination events

35. FLP/FRT-mediated conditional mutagenesis in pre-erythrocytic stages of Plasmodium berghei

40. Pfsbp1, a Maurer's cleft Plasmodium falciparum protein, is associated with the erythrocyte skeleton.

42. A malaria phosphatidylinositol-specific phospholipase C: a possible role in merozoite maturation and erythrocyte invasion

46. Whole Pichia pastoris Yeast Expressing Measles Virus Nucleoprotein as a Production and Delivery System to Multimerize Plasmodium Antigens.

48. Plasmodium falciparum asparagine and aspartate rich protein 2 is an evolutionary conserved protein whose repeats identify a new family of parasite antigens1Note: Nucleotide sequence data reported in this paper are available in the EMBL, GenBankTM and DDJB data bases under the accession numbers Y08924 and Y08925.1

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