PLoS Pathogens · 2014 · 96 citations · 41 references
Molecular RegulationMalariaImmunologyCell DeathCellular PhysiologyReceptor Tyrosine KinaseHematologyPlasmodium Falciparum MalariaSecretory PathwayCell SignalingParasitologyHost-parasite RelationshipMolecular PathwayVector-parasite RelationshipHuman ErythrocytesMicroneme SecretionApical OrganellesCell BiologyBiologyCentral RoleSignal TransductionPathogenesisParasite ControlMedicine
All pathogenesis and death associated with Plasmodium falciparum malaria is due to parasite-infected erythrocytes. Invasion of erythrocytes by P. falciparum merozoites requires specific interactions between host receptors and parasite ligands that are localized in apical organelles called micronemes. Here, we identify cAMP as a key regulator that triggers the timely secretion of microneme proteins enabling receptor-engagement and invasion. We demonstrate that exposure of merozoites to a low K+ environment, typical of blood plasma, activates a bicarbonate-sensitive cytoplasmic adenylyl cyclase to raise cytosolic cAMP levels and activate protein kinase A, which regulates microneme secretion. We also show that cAMP regulates merozoite cytosolic Ca2+ levels via induction of an Epac pathway and demonstrate that increases in both cAMP and Ca2+ are essential to trigger microneme secretion. Our identification of the different elements in cAMP-dependent signaling pathways that regulate microneme secretion during invasion provides novel targets to inhibit blood stage parasite growth and prevent malaria.
41
Human Malaria Parasites in Continuous Culture
William Trager, James B. Jensen · Science · 1976 · 7.9K citations
Cytoplasmic pH and free Mg2+ in lymphocytes.
T J Rink, Roger Y. Tsien, Tullio Pozzan · The Journal of Cell Biology · 1982 · 1K citations · Full text
Soluble Adenylyl Cyclase as an Evolutionarily Conserved Bicarbonate Sensor
Yanqiu Chen, Martin J. Cann, Tatiana N. Litvin et al. · Science · 2000 · 840 citations · Full text
Reproductive Biology, Cellular Physiology, Fertilisation +18