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Cryo-EM structure of endogenous Pfs230:Pfs48/45 complex with six antibodies reveals mechanisms of malaria transmission-blocking activity.

Ezra T Bekkering ,
Randy Yoo ,
Sophia Hailemariam ,
Fabian Heide ,
Danton Ivanochko ,
Matthew Jackman ,
Nicholas I Proellochs ,
Rianne Stoter ,
Geert-Jan van Gemert ,
Ayana Maeda ,
Takaaki Yuguchi ,
Oscar T Wanders ,
Renate C van Daalen ,
Maartje R Inklaar ,
Carolina M Andrade ,
Pascal W T C Jansen ,
Michiel Vermeulen ,
Teun Bousema ,
Eizo Takashima ,
John L Rubinstein ,
Taco W A Kooij ,
Matthijs M Jore ,
Jean-Philippe Julien

Abstract

The Pfs230:Pfs48/45 complex forms the basis for leading malaria transmission-blocking vaccine candidates, yet little is known about its molecular assembly. Here, we used cryo-electron microscopy to elucidate the structure of the endogenous Pfs230:Pfs48/45 complex bound to six transmission-blocking antibodies. Our structure revealed that Pfs230 consists of multiple domain clusters rigidified by interactions mediated through insertion domains. Membrane-anchored Pfs48/45 formed a disk-like structure, interacting with a short C-terminal peptide on Pfs230 that was critical for Pfs230 membrane-retention in vivo. Membrane retention through this interaction was not essential for transmission to mosquitoes, suggesting that complex disruption is not a mode of action for transmission-blocking antibodies. Analyses of Pfs48/45- and Pfs230-targeted antibodies identified conserved epitopes on the Pfs230:Pfs48/45 complex and provided a structural paradigm for complement-dependent activity of Pfs230-targeting antibodies. Altogether, the antibody-bound Pfs230:Pfs48/45 structure improves our molecular understanding of this biological complex, informing the development of next-generation Plasmodium falciparum transmission-blocking interventions.

More about this publication

Immunity

Volume 58
Issue nr. 11
Pages 2899-2916.e10
Publication date 11-11-2025

Full text links

Publisher website (DOI) 10.1016/j.immuni.2025.09.014
Europe PubMed Central 41072404
Pubmed 41072404

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