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Hierarchical phosphorylation of apical membrane antigen 1 is required for efficient red blood cell invasion by malaria parasites.

Sci Rep. 2016; 
Prinz Boris,Harvey Katherine L,Wilcke Louisa,Ruch Ulrike,Engelberg Klemens,Biller Laura,Lucet Isabelle,Erkelenz Steffen,Heincke Dorothee,Spielmann Tobias,Doerig Christian,Kunick Conrad,Crabb Brendan S,Gilson Paul R,Gilberger T
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Peptide Synthesis After washing with TBS, the wells were probed with 1 μ g/mL rabbit anti-PfAMA1S610p (Genscript [peptide: SFWGEEKRASpHTTPV]) or mouse anti-phosphothreonine (Abcam). Get A Quote

摘要

Central to the pathogenesis of malaria is the proliferation of Plasmodium falciparum parasites within human erythrocytes. Parasites invade erythrocytes via a coordinated sequence of receptor-ligand interactions between the parasite and host cell. One key ligand, Apical Membrane Antigen 1 (AMA1), is a leading blood-stage vaccine and previous work indicates that phosphorylation of its cytoplasmic domain (CPD) is important to its function during invasion. Here we investigate the significance of each of the six available phospho-sites in the CPD. We confirm that the cyclic AMP/protein kinase A (PKA) signalling pathway elicits a phospho-priming step upon serine 610 (S), which enables subsequent phosphorylation... More

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