1fto: Difference between revisions
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'''CRYSTAL STRUCTURE OF THE GLUR2 LIGAND BINDING CORE (S1S2J) IN THE APO STATE AT 2.0 A RESOLUTION''' | '''CRYSTAL STRUCTURE OF THE GLUR2 LIGAND BINDING CORE (S1S2J) IN THE APO STATE AT 2.0 A RESOLUTION''' | ||
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[[Category: Armstrong, N.]] | [[Category: Armstrong, N.]] | ||
[[Category: Gouaux, E.]] | [[Category: Gouaux, E.]] | ||
[[Category: | [[Category: Apo]] | ||
[[Category: | [[Category: Ionotropic glutamate receptor]] | ||
[[Category: | [[Category: Ligand binding domain]] | ||
[[Category: | [[Category: Unligandeded]] | ||
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Fri May 2 16:45:14 2008'' | |||
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Revision as of 16:45, 2 May 2008
CRYSTAL STRUCTURE OF THE GLUR2 LIGAND BINDING CORE (S1S2J) IN THE APO STATE AT 2.0 A RESOLUTION
OverviewOverview
Crystal structures of the GluR2 ligand binding core (S1S2) have been determined in the apo state and in the presence of the antagonist DNQX, the partial agonist kainate, and the full agonists AMPA and glutamate. The domains of the S1S2 ligand binding core are expanded in the apo state and contract upon ligand binding with the extent of domain separation decreasing in the order of apo > DNQX > kainate > glutamate approximately equal to AMPA. These results suggest that agonist-induced domain closure gates the transmembrane channel and the extent of receptor activation depends upon the degree of domain closure. AMPA and glutamate also promote a 180 degrees flip of a trans peptide bond in the ligand binding site. The crystal packing of the ligand binding cores suggests modes for subunit-subunit contact in the intact receptor and mechanisms by which allosteric effectors modulate receptor activity.
About this StructureAbout this Structure
1FTO is a Single protein structure of sequence from Rattus norvegicus. Full crystallographic information is available from OCA.
ReferenceReference
Mechanisms for activation and antagonism of an AMPA-sensitive glutamate receptor: crystal structures of the GluR2 ligand binding core., Armstrong N, Gouaux E, Neuron. 2000 Oct;28(1):165-81. PMID:11086992 Page seeded by OCA on Fri May 2 16:45:14 2008