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The apicoplast is a four-membrane plastid found in the apicomplexans, which harbors biosynthesis and organelle housekeeping activities in the matrix. However, the mechanism driving the flux of metabolites, in and out, remains unknown. Here we used TurboID and genome engineering to identify apicop...

2024-01-15 | MTBLS7060 | MetaboLights
Genome assembly of the Apicomplexan parasite Hepatocystis from a Piliocolobus blood sample
Apicomplexan parasites cause persistent mortality and morbidity worldwide through diseases including malaria, toxoplasmosis, and cryptosporidiosis. Ca2+ signaling pathways have been repurposed in these eukaryotic pathogens to regulate parasite-specific cellular processes governing the transition bet...
ORGANISM(S): Toxoplasma gondii RH 
2022-10-15 | PXD033765 | Pride
Tetracyclines are effective but slow-acting antimalarial drugs whose mechanism of action remains uncertain. To characterize the antimalarial mechanism of tetracyclines, we evaluated their stage-specific activities, impacts on parasite transcription, and effects on two predicted organelle targets, th...
ORGANISM(S): Plasmodium falciparum 
Apicomplexan parasites cause persistent mortality and morbidity worldwide through diseases including malaria, toxoplasmosis, and cryptosporidiosis. Ca2+ signaling pathways have been repurposed in these eukaryotic pathogens to regulate parasite-specific cellular processes governing the transition bet...
ORGANISM(S): Toxoplasma gondii RH 
2022-10-15 | PXD033713 | Pride

Apicomplexan parasite growth and replication relies on nutrient acquisition from host cells, in which intracellular multiplication occurs, yet the mechanisms that underlie the nutrient salvage remain elusive. Numerous ultrastructural studies have documented a plasma membrane invagination with a d...

2023-04-19 | MTBLS7006 | MetaboLights
Apicomplexan parasites cause persistent mortality and morbidity worldwide through diseases including malaria, toxoplasmosis, and cryptosporidiosis. Ca2+ signaling pathways have been repurposed in these eukaryotic pathogens to regulate parasite-specific cellular processes governing the transition bet...
ORGANISM(S): Toxoplasma gondii RH 
2023-08-21 | PXD033738 | Pride
Apicomplexan parasites cause persistent mortality and morbidity worldwide through diseases including malaria, toxoplasmosis, and cryptosporidiosis. Ca2+ signaling pathways have been repurposed in these eukaryotic pathogens to regulate parasite-specific cellular processes governing the transition bet...
ORGANISM(S): Toxoplasma gondii RH 
2022-10-15 | PXD033650 | Pride
Lifecycle progression and sexual development of the apicomplexan parasite Cryptosporidium parvum
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