Cell biological analysis reveals an essential role for Pfcerli2 in erythrocyte invasion by malaria parasites.

Liffner, Benjamin , Balbin, Juan Miguel , Shami, Gerald J., Strauss, Jan , Frölich, Sonja , Heinemann, Gary K., Alder, Arne , Wichers, Jan Stephan , Creek, Darren J., Tilley, Leann , Dixon, Matthew W. A. , Gilberger, Tim-Wolf and Wilson, Danny W. (2022) Cell biological analysis reveals an essential role for Pfcerli2 in erythrocyte invasion by malaria parasites. Open Access Communications Biology, 5 . Art.Nr. 121. DOI 10.1038/s42003-022-03020-9.

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Abstract

Merozoite invasion of host red blood cells (RBCs) is essential for survival of the human malaria parasite Plasmodium falciparum. Proteins involved with RBC binding and invasion are secreted from dual-club shaped organelles at the apical tip of the merozoite called the rhoptries. Here we characterise P. falciparum Cytosolically Exposed Rhoptry Leaflet Interacting protein 2 (PfCERLI2), as a rhoptry bulb protein that is essential for merozoite invasion. Phylogenetic analyses show that cerli2 arose through an ancestral gene duplication of cerli1. We show that PfCERLI2 is essential for blood-stage growth and localises to the cytosolic face of the rhoptry bulb. Inducible knockdown of PfCERLI2 led to a proportion of merozoites failing to invade and was associated with elongation of the rhoptry organelle during merozoite development and inhibition of rhoptry antigen processing. These findings identify PfCERLI2 as a protein that has key roles in rhoptry biology during merozoite invasion.

Document Type: Article
Keywords: antigen presentation; article; cell organelle; erythrocyte; gene duplication; human; human cell; merozoite; nonhuman; phylogeny; Plasmodium; Plasmodium falciparum; protein function
Research affiliation: OceanRep > GEOMAR > FB3 Marine Ecology > FB3-OEB Ökosystembiologie des Ozeans
Main POF Topic: PT6: Marine Life
Refereed: Yes
Open Access Journal?: Yes
Publisher: Nature Research
Date Deposited: 08 Jan 2021 12:05
Last Modified: 20 Jan 2025 08:37
URI: https://oceanrep.geomar.de/id/eprint/51469

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