The interferon-induced double-stranded RNA-activated protein kinase PKR will phosphorylate serine, threonine, or tyrosine at residue 51 in eukaryoticinitiation factor 2 alpha
Jf. Lu et al., The interferon-induced double-stranded RNA-activated protein kinase PKR will phosphorylate serine, threonine, or tyrosine at residue 51 in eukaryoticinitiation factor 2 alpha, J BIOL CHEM, 274(45), 1999, pp. 32198-32203
The family of eukaryotic initiation factor 2 alpha (eIF2 alpha) protein kin
ases plays an important role in regulating cellular protein synthesis under
stress conditions. The mammalian kinases PKR and HRI and the yeast kinase
GCN2 specifically phosphorylate Ser-51 on the a subunit of the translation
initiation factor eIF2, By using an in vivo assay in yeast, the substrate s
pecificity of these three eIF2 alpha kinases was examined by substituting S
er-51 in eIF2 alpha with Thr or Tyr. In yeast, phosphorylation of eIF2 inhi
bits general translation but derepresses translation of the GCN4 mRNA. All
three kinases phosphorylated Thr in place of Ser-51 and were able to regula
te general and GCN4-specific translation. In addition, both PHR and HRI wer
e found to phosphorylate eIF2 alpha-S51Y and stimulate GCN4 expression. Iso
electric focusing analysis of eIF2 alpha followed by detection using anti-e
IF2 alpha and anti-phosphotyrosine-specific antibodies demonstrated that PK
R and HRI phosphorylated eIF2 alpha-S51Y on Tyr in vivo. These results prov
ide new insights into the substrate recognition properties of the eIF2 alph
a kinases, and they are intriguing considering the potential for alternate
substrates for PKR in cellular signaling and growth control pathways.