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Epigenetic processes are the main conductors of phenotypic variation in eukaryotes. The malaria parasite Plasmodium falciparum employs antigenic variation of the major surface antigen PfEMP1, encoded by 60 var genes, to evade acquired immune responses. PfEMP1 also mediates sequestration of infected ...
ORGANISM(S): Plasmodium falciparum 

Modulating cell endocytosis activity to reduce host susceptibility to virus represents a promising strategy for antiviral drug development. In this study, we reveal that lactate transporter SLC16A3 as a critical host factor for reducing diverse virus invasion. By performing metabolomics, proteomi...

2025-07-28 | MTBLS12788 | MetaboLights
The malaria parasite, Plasmodium falciparum, traffics the virulence protein erythrocyte membrane protein 1 (EMP1) to the surface of infected red blood cells (RBCs) via membranous organelles known as the Maurer’s clefts. How EMP1 is trafficked from the clefts to its site of action at the RBC surface ...
ORGANISM(S): Plasmodium falciparum (isolate 3D7) 
2022-07-04 | PXD027566 | Pride
Our data suggest that all SR proteins contribute to mRNA export via NXF1. To identify endogenous export targets we depleted all seven SR proteins individually from P19 WT cells prepared cytoplasmic fractions. We sequenced the cytoplasmic fraction and as a control whole celll RNA from the identical s...
ORGANISM(S): Mus musculus 
The deadly human malaria-causing parasite, Plasmodium falciparum relies on its capacity to completely remodel its host red blood cell (RBC) through the export of several hundred parasite proteins across several membranes to the RBC.We fused the exported membrane protein, skeleton binding protein 1 (...
ORGANISM(S): Plasmodium Falciparum Nf54 (ncbitaxon:5843) 
2022-06-27 | MSV000089743 | MassIVE
To investigate the inside and exported miRNA in cell culture system. We characterized the miRNA spectra of cell lines when deprived of serum. The absence of miRNAs present in bovine serum is a distinct advantage of using serum depletion to study extracellular miRNA as it removes potential source of ...
ORGANISM(S): Homo sapiens 
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