Plasmodium myosin A drives parasite invasion by an atypical force generating mechanism.


Journal

Nature communications
ISSN: 2041-1723
Titre abrégé: Nat Commun
Pays: England
ID NLM: 101528555

Informations de publication

Date de publication:
23 07 2019
Historique:
received: 22 11 2018
accepted: 11 06 2019
entrez: 25 7 2019
pubmed: 25 7 2019
medline: 6 2 2020
Statut: epublish

Résumé

Plasmodium parasites are obligate intracellular protozoa and causative agents of malaria, responsible for half a million deaths each year. The lifecycle progression of the parasite is reliant on cell motility, a process driven by myosin A, an unconventional single-headed class XIV molecular motor. Here we demonstrate that myosin A from Plasmodium falciparum (PfMyoA) is critical for red blood cell invasion. Further, using a combination of X-ray crystallography, kinetics, and in vitro motility assays, we elucidate the non-canonical interactions that drive this motor's function. We show that PfMyoA motor properties are tuned by heavy chain phosphorylation (Ser19), with unphosphorylated PfMyoA exhibiting enhanced ensemble force generation at the expense of speed. Regulated phosphorylation may therefore optimize PfMyoA for enhanced force generation during parasite invasion or for fast motility during dissemination. The three PfMyoA crystallographic structures presented here provide a blueprint for discovery of specific inhibitors designed to prevent parasite infection.

Identifiants

pubmed: 31337750
doi: 10.1038/s41467-019-11120-0
pii: 10.1038/s41467-019-11120-0
pmc: PMC6650474
doi:

Substances chimiques

Protozoan Proteins 0
Nonmuscle Myosin Type IIA EC 3.6.1.-

Types de publication

Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

3286

Subventions

Organisme : Wellcome Trust
Pays : United Kingdom
Organisme : NHLBI NIH HHS
ID : K99 HL124041
Pays : United States
Organisme : NHLBI NIH HHS
ID : R00 HL124041
Pays : United States
Organisme : NIAID NIH HHS
ID : R01 AI132378
Pays : United States

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Auteurs

Julien Robert-Paganin (J)

Structural Motility, UMR 144 CNRS/Curie Institute, 26 rue d'ulm, 75258, Paris cedex 05, France.

James P Robblee (JP)

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT, 05405, USA.

Daniel Auguin (D)

Laboratoire de Biologie des Ligneux et des Grandes Cultures (LBLGC), Université d'Orléans, INRA, USC1328, 45067, Orléans, France.

Thomas C A Blake (TCA)

Department of Life Sciences, Imperial College London, Exhibition Road, South Kensington, London, SW7 2AZ, UK.

Carol S Bookwalter (CS)

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT, 05405, USA.

Elena B Krementsova (EB)

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT, 05405, USA.

Dihia Moussaoui (D)

Structural Motility, UMR 144 CNRS/Curie Institute, 26 rue d'ulm, 75258, Paris cedex 05, France.

Michael J Previs (MJ)

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT, 05405, USA.

Guillaume Jousset (G)

Structural Motility, UMR 144 CNRS/Curie Institute, 26 rue d'ulm, 75258, Paris cedex 05, France.

Jake Baum (J)

Department of Life Sciences, Imperial College London, Exhibition Road, South Kensington, London, SW7 2AZ, UK.

Kathleen M Trybus (KM)

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, VT, 05405, USA. kathleen.trybus@uvm.edu.

Anne Houdusse (A)

Structural Motility, UMR 144 CNRS/Curie Institute, 26 rue d'ulm, 75258, Paris cedex 05, France. anne.houdusse@curie.fr.

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Classifications MeSH