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与从自然暴露个体中分离出的强效单克隆抗体复合的全长Pfs48/45的结构解析

Structural elucidation of full-length Pfs48/45 in complex with potent monoclonal antibodies isolated from a naturally exposed individual.

作者信息

Kucharska Iga, Ivanochko Danton, Hailemariam Sophia, Inklaar Maartje R, Kim Hee Ryung, Teelen Karina, Stoter Rianne, van de Vegte-Bolmer Marga, van Gemert Geert-Jan, Semesi Anthony, McLeod Brandon, Ki Ahyoung, Lee Won-Kyu, Rubinstein John L, Jore Matthijs M, Julien Jean-Philippe

机构信息

Program in Molecular Medicine, The Hospital for Sick Children Research Institute, Toronto, Ontario, Canada.

Department of Biochemistry, University of Toronto, Toronto, Ontario, Canada.

出版信息

Nat Struct Mol Biol. 2025 May 22. doi: 10.1038/s41594-025-01532-6.

Abstract

Biomedical interventions that block the transmission of Plasmodium falciparum (Pf) from humans to mosquitoes may be critical for malaria elimination. Pfs48/45, a gamete-surface protein essential for Pf development in the mosquito midgut, is a target of clinical-stage transmission-blocking vaccines and monoclonal antibodies (mAbs) that disrupt Pf transmission to mosquitoes. Antibodies directed to domain 3 of Pfs48/45 have been structurally and functionally described; however, in-depth information about other inhibitory epitopes on Pfs48/45 is currently limited. Here, we present a cryo-electron microscopy structure of full-length Pfs48/45 in complex with potent human mAbs targeting all three domains. Our data indicate that although Pfs48/45 domains 1 and 2 are rigidly coupled, there is substantial conformational flexibility between domains 2 and 3. Characterization of mAbs against domain 1 revealed the presence of a conformational epitope class that is largely conserved across Pf field isolates and is associated with recognition by potent antibodies. Our study provides insights into epitopes across full-length Pfs48/45 and has implications for the design of next-generation malaria interventions.

摘要

阻断恶性疟原虫(Pf)从人类传播至蚊子的生物医学干预措施对于消除疟疾可能至关重要。Pfs48/45是一种配子表面蛋白,对疟原虫在蚊子中肠的发育至关重要,它是临床阶段阻断传播疫苗和破坏疟原虫向蚊子传播的单克隆抗体(mAb)的靶点。针对Pfs48/45结构域3的抗体已有结构和功能方面的描述;然而,目前关于Pfs48/45上其他抑制性表位的深入信息有限。在此,我们展示了全长Pfs48/45与靶向所有三个结构域的强效人源单克隆抗体形成复合物的冷冻电子显微镜结构。我们的数据表明,尽管Pfs48/45的结构域1和2紧密相连,但结构域2和3之间存在显著的构象灵活性。针对结构域1的单克隆抗体的表征揭示了一种构象表位类别,该类别在疟原虫野外分离株中基本保守,并且与强效抗体的识别相关。我们的研究为全长Pfs48/45的表位提供了见解,并对下一代疟疾干预措施的设计具有启示意义。

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