References
- Banerjee R, Liu J, Beatty W, Pelosof L, Klemba M, Goldberg DE (2002) Four plasmepsins are active in the Plasmodium falciparum food vacuole, including a protease with an active-site histidine. Proc Natl Acad Sci USA 99: 990-995
- Chung JY, Chun EH, Chun JH, Kho WG (2003) Analysis of the Plasmodium vivax apical membrane antigen-1 gene from re-emerging Korean isolates. Parasitol Res 90: 325-329
- Coombs GH, Goldberg DE, Klemba M, Berry C, Kay J, Mottram JC (2001) Aspartic proteases of Plasmodium falciparum and other parasitic protozoa as drug targets. Trends Parasitol 17: 532-537
- Dame JB, Yowell CA, Omara-Opyene L, Carlton JM, Cooper RA, Li T (2003) Plasmepsin 4, the food vacuole aspartic proteinase found in all Plasmodium spp. infecting man. Mol Biochem Parasitol 130: 1-12
- Eggleson KK, Duffin KL, Goldberg DE (2000) Identification and characterization of falcilysin, a metallopeptidase involved in hemoglobin catabolism within the malaria parasite Plasmodium falciparum. J Biol Chem 274: 32411-32417
- Figtree M, Pasay CJ, Slade R, et al. (2000) Plasmodium vivax synonymous substitution frequencies, evolution and population structure deduced from diversity in AMA1 and MSP1 genes. Mol Biochem Parasitol 108: 53-66
- Francis SE, Gluzman IY, Oksman A, et al. (1994) Molecular characterization and inhibition of a Plasmodium falciparum aspartic hemoglobinase. EMBO J 13: 306-317
- Fryauff DJ, Tuti S, Mardi A, et al. (1998) Chloroquine-resistant Plasmodium vivax in transmigration settlements of West Kalimantan, Indonesia. Am J Trop Med Hyg 59: 513-518 https://doi.org/10.4269/ajtmh.1998.59.513
- Gavigan CS, Dalton JP, Bell A (2001) The role of aminopeptidases in haemoglobin degradation in Plasmodium falciparum- infected erythrocytes. Mol Biochem Parasitol 117: 37-48
- Goldberg DE, Slater AF, Cerami A, Henderson GB (1990) Hemoglobin degradation in the malaria parasite: an ordered process in a unique organelle. Proc Natl Acad Sci USA 87: 2931-2935 https://doi.org/10.1073/pnas.87.8.2931
- Haque TS, Skillman AG, Lee CE, et al. (1999) Potent, lowmolecular- weight non-peptide inhibitors of malarial aspartyl protease plasmepsin II. J Med Chem 42: 1428-1440 https://doi.org/10.1021/jm980641t
- Kolakovich KA, Gluzman IY, Duffin KL, Goldberg DE (1997) Generation of hemoglobin peptides in the acidic digestive vacuole of Plasmodium falciparum implicates peptide transport in amino acid production. Mol Biochem Parasitol 87: 123-135 https://doi.org/10.1016/S0166-6851(97)00062-5
- Le Bonniec S, Deregnaucourt C, Redeker V, et al. (1999) Plasmepsin II, an acidic hemoglobinase from the Plasmodium falciparum food vacuole, is active at neutral pH on the host erythrocyte membrane skeleton. J Biol Chem 274: 14218-14223 https://doi.org/10.1074/jbc.274.20.14218
- Mendis K, Sina BJ, Marchesini P, Carter R (2001) The neglected burden of Plasmodium vivax malaria. Am J Trop Med Hyg 64: 97-106
- Nezami A, Luque I, Kimura T, Kiso Y, Freire E (2002) Identification and characterization of allophenylnorstatine- based inhibitors of plasmepsin II an antimalarial target. Biochemistry 41: 2273-2280
- Rosenthal PJ (1995) Plasmodium falciparum: effects of proteinase inhibitors on globin hydrolysis by cultured malaria parasites. Exp Parasitol 80: 272-281
- Ruebush TK Jr, Zegarra J, Cairo J, et al. (2003) Chloroquineresistant lasmodium vivax malaria in Peru. Am J Trop Med Hyg 69: 548-552
- Wyatt DM, Berry C (2002) Activity and inhibition of plasmepsin IV, a new aspartic proteinase from the malaria parasite, Plasmodium falciparum. FEBS Lett 513: 159-162