Mol Cell Biol 2001,
PMID: 11564868
Connor, J H; Weiser, D C; Li, S; Hallenbeck, J M; Shenolikar, S
The growth arrest and DNA damage-inducible protein, GADD34, was identified by its interaction with human inhibitor 1 (I-1), a protein kinase A (PKA)-activated inhibitor of type 1 protein serine/threonine phosphatase (PP1), in a yeast two-hybrid screen of a human brain cDNA library. Recombinant GADD34 (amino acids 233 to 674) bound both PKA-phosphorylated and unphosphorylated I-1(1-171). Serial truncations mapped the C terminus of I-1 (amino acids 142 to 171) as essential for GADD34 binding. In contrast, PKA phosphorylation was required for PP1 binding and inhibition by the N-terminal I-1(1-80) fragment. Pulldowns of GADD34 proteins expressed in HEK293T cells showed that I-1 bound the central domain of GADD34 (amino acids 180 to 483). By comparison, affinity isolation of cellular GADD34/PP1 complexes showed that PP1 bound near the C terminus of GADD34 (amino acids 483 to 619), a region that shows sequence homology with the virulence factors ICP34.5 of herpes simplex virus and NL-S of avian sarcoma virus. While GADD34 inhibited PP1-catalyzed dephosphorylation of phosphorylase a, the GADD34-bound PP1 was an active eIF-2alpha phosphatase. In brain extracts from active ground squirrels, GADD34 bound both I-1 and PP1 and eIF-2alpha was largely dephosphorylated. In contrast, the I-1/GADD34 and PP1/GADD34 interactions were disrupted in brain from hibernating animals, in which eIF-2alpha was highly phosphorylated at serine-51 and protein synthesis was inhibited. These studies suggested that modification of the I-1/GADD34/PP1 signaling complex regulates the initiation of protein translation in mammalian tissues.
Document information provided by NCBI PubMed
Text Mining Data
PP1 → PKA: "
In contrast,
PKA phosphorylation was
required for
PP1 binding and inhibition by the N-terminal I-1 ( 1-80 ) fragment
"
Manually curated Databases
-
IRef Biogrid Interaction:
PPP1R15A
—
PPP1CB
(physical association, affinity chromatography technology)
-
IRef Biogrid Interaction:
PPP1R15A
—
PPP1CC
(physical association, affinity chromatography technology)
-
IRef Biogrid Interaction:
PPP1R15A
—
PPP1CA
(physical association, affinity chromatography technology)
-
Gene Ontology Complexes protein phosphatase type 1 complex:
protein phosphatase type 1 complex complex (PPP1R15A-PPP1R9B-PPP1R15B-PPP1R3B)
-
IRef Hprd Interaction:
PPP1R15A
—
PPP1R1A
(two hybrid)
-
IRef Hprd Interaction:
PPP1R15A
—
PPP1R1A
(in vivo)
-
IRef Hprd Interaction:
PPP1R15A
—
PPP1R1A
(in vitro)
-
IRef Intact Interaction:
PPP1R15A
—
PPP1R1A
(physical association, two hybrid)
-
IRef Intact Interaction:
PPP1R15A
—
PPP1R1A
(physical association, pull down)
-
IRef Ophid Interaction:
PPP1R15A
—
NPY4R
(aggregation, confirmational text mining)
In total, 11 gene pairs are associated to this article in curated databases