A malaria membrane skeletal protein is essential for normal morphogenesis, motility, and infectivity of sporozoites
Open Access
- 8 November 2004
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 167 (3) , 425-432
- https://doi.org/10.1083/jcb.200406068
Abstract
Membrane skeletons are structural elements that provide mechanical support to the plasma membrane and define cell shape. Here, we identify and characterize a putative protein component of the membrane skeleton of the malaria parasite. The protein, named PbIMC1a, is the structural orthologue of the Toxoplasma gondii inner membrane complex protein 1 (TgIMC1), a component of the membrane skeleton in tachyzoites. Using targeted gene disruption in the rodent malaria species Plasmodium berghei, we show that PbIMC1a is involved in sporozoite development, is necessary for providing normal sporozoite cell shape and mechanical stability, and is essential for sporozoite infectivity in insect and vertebrate hosts. Knockout of PbIMC1a protein expression reduces, but does not abolish, sporozoite gliding locomotion. We identify a family of proteins related to PbIMC1a in Plasmodium and other apicomplexan parasites. These results provide new functional insight in the role of membrane skeletons in apicomplexan parasite biology.Keywords
This publication has 22 references indexed in Scilit:
- Identification of the membrane receptor of a class XIV myosin in Toxoplasma gondii The Journal of cell biology, 2004
- Aldolase Forms a Bridge between Cell Surface Adhesins and the Actin Cytoskeleton in Apicomplexan ParasitesMolecular Cell, 2003
- Proteolytic Processing of TgIMC1 during Maturation of the Membrane Skeleton of Toxoplasma gondiiPublished by Elsevier ,2002
- MAEBL Is Essential for Malarial Sporozoite Infection of the Mosquito Salivary GlandThe Journal of Experimental Medicine, 2002
- Cytoskeleton of Apicomplexan ParasitesMicrobiology and Molecular Biology Reviews, 2002
- The membrane skeletonTrends in Cell Biology, 1993
- Decreased osmotic stability of dystrophin-less muscle cells from the mdx mouseNature, 1991
- The development of Plasmodium ookinetes in vitro: an ultrastructural study including a description of meiotic divisionParasitology, 1985
- Comparative electron microscope study of pellicular structures in coccidia (Sarcocystis, besnoitia and Eimeria)International Journal for Parasitology, 1977
- Studies on the Motility of Plasmodium Sporozoites*The Journal of Protozoology, 1974