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PDBsum entry 1uec
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Signaling protein
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PDB id
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1uec
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Contents |
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* Residue conservation analysis
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References listed in PDB file
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Key reference
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Title
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A molecular mechanism for autoinhibition of the tandem sh3 domains of p47phox, The regulatory subunit of the phagocyte NADPH oxidase.
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Authors
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S.Yuzawa,
N.N.Suzuki,
Y.Fujioka,
K.Ogura,
H.Sumimoto,
F.Inagaki.
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Ref.
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Genes Cells, 2004,
9,
443-456.
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PubMed id
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Abstract
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The phagocyte NADPH oxidase is a multisubunit enzyme responsible for the
production of reactive oxygen species. p47(phox) is a cytosolic component of the
NADPH oxidase and plays an important role in the assembly of the activated
complex. The structural determination of the tandem SH3 domains of p47(phox) is
crucial for elucidation of the molecular mechanism of the activation of
p47(phox). We determined the X-ray crystal structure of the tandem SH3 domains
with the polybasic/autoinhibitory region (PBR/AIR) of p47(phox). The GAPPR
sequence involved in PBR/AIR forms a left-handed polyproline type-II helix
(PPII) and interacts with the conserved SH3 binding surfaces of the SH3 domains
simultaneously. These SH3 domains are related by a 2-fold pseudosymmetry axis at
the centre of the binding groove and interact with the single PPII helix formed
by the GAPPR sequence with opposite orientation. In addition, a number of
intra-molecular interactions among the SH3 domains, PBR/AIR and the linker
tightly hold the architecture of the tandem SH3 domains into the compact
structure and stabilize the autoinhibited form synergistically. Phosphorylation
of the serine residues in PBR/AIR could destabilize and successively release the
intra-molecular interactions. Thus, the overall structure could be rearranged
from the autoinhibitory conformation to the active conformation and the PPII
ligand binding surfaces on the SH3 domains are now unmasked, which enables their
interaction with the target sequence in p22(phox).
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