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PDBsum entry 4hqn
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Cell adhesion
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PDB id
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4hqn
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References listed in PDB file
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Key reference
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Title
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Shape change in the receptor for gliding motility in plasmodium sporozoites.
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Authors
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G.Song,
A.C.Koksal,
C.Lu,
T.A.Springer.
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Ref.
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Proc Natl Acad Sci U S A, 2012,
109,
21420-21425.
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PubMed id
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Abstract
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Sporozoite gliding motility and invasion of mosquito and vertebrate host cells
in malaria is mediated by thrombospondin repeat anonymous protein (TRAP). Tandem
von Willebrand factor A (VWA) and thrombospondin type I repeat (TSR) domains in
TRAP connect through proline-rich stalk, transmembrane, and cytoplasmic domains
to the parasite actin-dependent motility apparatus. We crystallized fragments
containing the VWA and TSR domains from Plasmodium vivax and Plasmodium
falciparum in different crystal lattices. TRAP VWA domains adopt closed and open
conformations, and bind a Mg(2+) ion at a metal ion-dependent adhesion site
implicated in ligand binding. Metal ion coordination in the open state is
identical to that seen in the open high-affinity state of integrin I domains.
The closed VWA conformation associates with a disordered TSR domain. In
contrast, the open VWA conformation crystallizes with an extensible β ribbon
and ordered TSR domain. The extensible β ribbon is composed of disulfide-bonded
segments N- and C-terminal to the VWA domain that are largely drawn out of the
closed VWA domain in a 15 Å movement to the open conformation. The extensible
β ribbon and TSR domain overlap at a conserved interface. The VWA, extensible
β ribbon, and TSR domains adopt a highly elongated overall orientation that
would be stabilized by tensile force exerted across a ligand-receptor complex by
the actin motility apparatus of the sporozoite. Our results provide insights
into regulation of "stick-and-slip" parasite motility and for
development of sporozoite subunit vaccines.
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