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PDBsum entry 4xpn
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PDB id:
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Hydrolase
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Title:
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Crystal structure of protein phosphate 1 complexed with pp1 binding domain of gadd34
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Structure:
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Serine/threonine-protein phosphatase pp1-alpha catalytic subunit. Chain: a, c. Fragment: unp residues 7-300. Synonym: pp-1a. Engineered: yes. Protein phosphatase 1 regulatory subunit 15a. Chain: b, d. Fragment: unp residues 552-591.
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Source:
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Homo sapiens. Human. Organism_taxid: 9606. Gene: ppp1ca, ppp1a. Expressed in: escherichia coli. Expression_system_taxid: 562. Gene: ppp1r15a, gadd34. Expression_system_taxid: 562
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Resolution:
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2.29Å
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R-factor:
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0.161
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R-free:
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0.205
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Authors:
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M.S.Choy,W.Peti,R.Page
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Key ref:
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M.S.Choy
et al.
(2015).
Structural and Functional Analysis of the GADD34:PP1 eIF2α Phosphatase.
Cell Rep,
11,
1885-1891.
PubMed id:
DOI:
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Date:
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17-Jan-15
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Release date:
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01-Jul-15
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PROCHECK
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Headers
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References
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P62136
(PP1A_HUMAN) -
Serine/threonine-protein phosphatase PP1-alpha catalytic subunit from Homo sapiens
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Seq: Struc:
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330 a.a.
296 a.a.*
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Enzyme class:
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Chains A, C:
E.C.3.1.3.16
- protein-serine/threonine phosphatase.
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Reaction:
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1.
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O-phospho-L-seryl-[protein] + H2O = L-seryl-[protein] + phosphate
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2.
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O-phospho-L-threonyl-[protein] + H2O = L-threonyl-[protein] + phosphate
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O-phospho-L-seryl-[protein]
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+
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H2O
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=
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L-seryl-[protein]
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+
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phosphate
Bound ligand (Het Group name = )
corresponds exactly
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O-phospho-L-threonyl-[protein]
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+
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H2O
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=
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L-threonyl-[protein]
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+
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phosphate
Bound ligand (Het Group name = )
corresponds exactly
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Molecule diagrams generated from .mol files obtained from the
KEGG ftp site
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DOI no:
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Cell Rep
11:1885-1891
(2015)
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PubMed id:
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Structural and Functional Analysis of the GADD34:PP1 eIF2α Phosphatase.
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M.S.Choy,
P.Yusoff,
I.C.Lee,
J.C.Newton,
C.W.Goh,
R.Page,
S.Shenolikar,
W.Peti.
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ABSTRACT
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The attenuation of protein synthesis via the phosphorylation of eIF2α is a
major stress response of all eukaryotic cells. The growth-arrest- and
DNA-damage-induced transcript 34 (GADD34) bound to the serine/threonine protein
phosphatase 1 (PP1) is the necessary eIF2α phosphatase complex that returns
mammalian cells to normal protein synthesis following stress. The molecular
basis by which GADD34 recruits PP1 and its substrate eIF2α are not fully
understood, hindering our understanding of the remarkable selectivity of the
GADD34:PP1 phosphatase for eIF2α. Here, we report detailed structural and
functional analyses of the GADD34:PP1 holoenzyme and its recruitment of eIF2α.
The data highlight independent interactions of PP1 and eIF2α with GADD34,
demonstrating that GADD34 functions as a scaffold both in vitro and in cells.
This work greatly enhances our molecular understanding of a major cellular
eIF2α phosphatase and establishes the foundation for future translational work.
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}
}
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