4.5 Article

A perforin-like protein mediates disruption of the erythrocyte membrane during egress of Plasmodium berghei male gametocytes

Journal

CELLULAR MICROBIOLOGY
Volume 15, Issue 8, Pages 1438-1455

Publisher

WILEY
DOI: 10.1111/cmi.12131

Keywords

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Funding

  1. InterMal training, a Marie Curie Initial Training Network [PITN-GA-2008-215281]
  2. UK Medical Research Council
  3. EVIMalaR network [242095]
  4. Transmalariabloc [HEALTH-F3-2008-223736]
  5. Deutsche Forschungsgemeinschaft [SPP1580]
  6. Medical Research Council [MC_U117532063] Funding Source: researchfish
  7. MRC [MC_U117532063] Funding Source: UKRI

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Successful gametogenesis of the malaria parasite depends on egress of the gametocytes from the erythrocytes within which they developed. Egress entails rupture of both the parasitophorous vacuole membrane and the erythrocyte plasma membrane, and precedes the formation of the motile flagellated male gametes in a process called exflagellation. We show here that egress of the male gametocyte depends on the function of a perforin-like protein, PPLP2. A mutant of Plasmodium berghei lacking PPLP2 displayed abnormal exflagellation; instead of each male gametocyte forming eight flagellated gametes, it produced gametocytes with only one, shared thicker flagellum. Using immunofluorescence and transmission electron microscopy analysis, and phenotype rescue with saponin or a pore-forming toxin, we conclude that rupture of the erythrocyte membraneis blocked in the mutant. The parasitophorous vacuole membrane, on the other hand, is ruptured normally. Some mutant parasites are still able to develop in the mosquito, possibly because the vigorous motility of the flagellated gametes eventually leads to escape from the persisting erythrocyte membrane. This is the first example of a perforin-like protein in Plasmodium parasites having a role in egress from the host cell and the first parasite protein shown to be specifically required for erythrocyte membrane disruption during egress.

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