Active Infection & Immunity

Molecular mechanisms of erythrocyte invasion in malaria

Summary

Original abstract (not yet simplified)

The symptoms of malaria occur as Plasmodium parasites divide within our blood cells. This requires parasites to invade cells through an active, dynamic, parasite-driven process. Here, we combine structural biology with precision genetic modification of parasites to show how three essential pieces of invasion machinery function in the deadliest malaria parasite, Plasmodium falciparum.The three protein complexes under study are:(i) The...

View original technical description
The symptoms of malaria occur as Plasmodium parasites divide within our blood cells. This requires parasites to invade cells through an active, dynamic, parasite-driven process. Here, we combine structural biology with precision genetic modification of parasites to show how three essential pieces of invasion machinery function in the deadliest malaria parasite, Plasmodium falciparum.The three protein complexes under study are:(i) The PfPCRCR complex, which is essential for Plasmodium falciparum to commit to invading an erythrocyte.(ii) The CLAMP-CLIP-SPATR complex, which is essential to trigger discharge of the Plasmodium rhoptry organelles containing molecular machinery required for parasite invasion.(iii) The RON complex, which is essential for formation of the moving junction, which is the dynamic anchor point between parasite and erythrocyte.We will:• Reveal the structure and conformational dynamics of each complex. • Identify novel parasite and erythrocyte binding partners and show how parasite complexes bind and modulate their function.• Make targeted, structure-guided, precision changes in parasites and use live cell imaging to assess effects on invasion.• Combine multiscale cryogenic electron and expansion microscopy imaging to study parasites trapped at specific stages in invasion.This study will provide mechanistic molecular snapshots of the invasion process and guide future rational therapeutic design.

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Researchers

Ellen Knuepfer (EPMC Awardee)Matthew Higgins (EPMC Awardee)Melissa Hart (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Erythrocyte invasion in malaria: molecular mechanism to precision therapeutics
Exploring the role of Decay-accelerating factor and tight junction formation during erythrocyte invasion by Plasmodium falciparum.
Cellular dissection of Plasmodium falciparum erythrocyte invasion
Dissecting the role of host receptor context and cytoskeletal disruption in malaria parasite invasion
Dissection of the function of the Plasmodium falciparum protein families EBL and RH during erythrocyte invasion.

Original classification

Discovery Award

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