6I7E image
Deposition Date 2018-11-16
Release Date 2019-08-07
Last Version Date 2024-10-16
Entry Detail
PDB ID:
6I7E
Keywords:
Title:
Plasmodium falciparum Myosin A, Pre-powerstroke
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
3.49 Å
R-Value Free:
0.23
R-Value Work:
0.19
R-Value Observed:
0.19
Space Group:
P 61 2 2
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Myosin-A
Gene (Uniprot):MyoA
Chain IDs:A
Chain Length:768
Number of Molecules:1
Biological Source:Plasmodium falciparum 3D7
Modified Residue
Compound ID Chain ID Parent Comp ID Details 2D Image
SEP A SER modified residue
Primary Citation
Plasmodium myosin A drives parasite invasion by an atypical force generating mechanism.
Nat Commun 10 3286 3286 (2019)
PMID: 31337750 DOI: 10.1038/s41467-019-11120-0

Abstact

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.

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Chemical

Disease

Primary Citation of related structures
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