PfApiAT2 is a proline transporter essential for the transmission of Plasmodium falciparum by the mosquito vector
PfApiAT2 — переносчик пролина, необходимый для передачи Plasmodium falciparum через комариный вектор
2026-07-03
SCID: 54.1/w9vj4d4x
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Anopheles gambiaePfApiAT2halofuginone resistanceoocyst developmentproline transporter
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Abstract (AI)
Plasmodium falciparum oocysts undergo an explosive biomass increase during development in Anopheles mosquitoes, a dramatic growth process likely promoted by as-yet unknown nutrients scavenged from the mosquito. We previously observed in blood-stage parasites, that the amino acid transporter PfApiAT2, although dispensable, regulates proline homeostasis and mediates resistance to halofuginone, a potent proline-tRNA synthetase inhibitor. Here, we demonstrate that PfApiAT2 is a proline-specific transporter essential for early oocyst development in Anopheles gambiae. Halofuginone-resistant pfapiat2-mutant parasites form stunted oocysts severely defective in sporozoite production. This phenotype is recapitulated in PfApiAT2-knockout parasites that undergo a complete block in sporogony, forming oocysts that stall and degenerate. Remarkably, this growth defect can be rescued by nutrient supplementation to the mosquito vector. By identifying an amino acid transporter essential for oocyst growth, our data unveil a vulnerability in P. falciparum transmission, revealing a critical nutritional dependency of the parasite on its mosquito vector.
Key Findings
1
PfApiAT2 is a proline-specific amino acid transporter in Plasmodium falciparum.
2
PfApiAT2 is essential for early oocyst development and successful sporogony in Anopheles gambiae.
3
PfApiAT2-knockout parasites exhibit a complete block in sporogony, with oocysts that stall and degenerate.
4
Supplementing nutrients to the mosquito vector can rescue the oocyst growth defect caused by loss of PfApiAT2, revealing a mosquito-dependent nutritional vulnerability for transmission.
5
pfapiat2-mutant parasites resistant to halofuginone form stunted oocysts with severely reduced sporozoite production.
Research Object
PfApiAT2 proline transporter in Plasmodium falciparum during mosquito-stage infection
Research Subject
Role of PfApiAT2-mediated proline transport for early oocyst development, sporogony, sporozoite production, and dependence of parasite transmission on mosquito-provided nutrients
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2026-07-03
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