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Purification and characterisation of an initiation-factor-2 kinase from uninduced mouse erythroleukaemia cells
H Mellor1, N T Price, S Oldfield
1Department of Biochemistry, School of Medical Sciences, University of Bristol, England.
Abstract:
Mouse erythroleukaemia (MEL) cells, which have not been induced into erythroid development, contain a protein kinase (MKu) which phosphorylates the alpha subunit of protein-synthesis-initiation factor 2 (eIF-2 alpha). In this paper, we show that this kinase phosphorylates both eIF-2 alpha and a synthetic peptide based on the phosphorylation site in eIF-2 alpha at Ser51, the target residue for other eIF-2 alpha kinases. Consistent with this, prior treatment of eIF-2 with MKu impaired the exchange of bound GDP for GTP which is catalysed by the exchange factor eIF-2B. Using a modified cell-free translation system, we have shown that MKu inhibits translation, consistent with the above observations concerning the site of phosphorylation and the effect of phosphorylation on eIF-2B-mediated guanine-nucleotide exchange. MKu has been purified and its properties have been compared with those of the haem-controlled repressor eIF-2 alpha kinase (HCR) from rabbit reticulocytes. Its behaviour on gel filtration is similar to that of HCR, while its behaviour on anion exchange resembles that of certain phosphorylated species of HCR. Highly purified preparations of MKu contain a protein with an apparent molecular mass of 98 kDa which comigrates with HCR on SDS/PAGE. This protein undergoes phosphorylation when incubated in the presence of Mg(2+)-ATP, and both this apparent autophosphorylation and the activity of the kinase against eIF-2 alpha are inhibited by the same, low, (10 microM) concentrations of haemin. Phosphorylation of the 98-kDa components present in the MEL-cell kinase preparation and in purified rabbit reticulocyte HCR occurs on serine and threonine residues. Analysis of these phosphoproteins by peptide mapping reveals significant differences in their structures, indicating that they may be closely related, but are certainly not identical.
Insights
A novel protein kinase (MKu) in mouse erythroleukaemia cells phosphorylates protein-synthesis-initiation factor 2 alpha (eIF-2 alpha), inhibiting translation. This kinase shares properties with rabbit reticulocyte haem-controlled repressor (HCR) but has distinct structural features.
Area of Science:
- Molecular Biology
- Cellular Biology
- Biochemistry
Background:
- Undifferentiated mouse erythroleukaemia (MEL) cells possess a protein kinase, designated MKu.
- MKu phosphorylates the alpha subunit of protein-synthesis-initiation factor 2 (eIF-2 alpha).
Purpose of the Study:
- To characterize the protein kinase MKu from MEL cells.
- To compare MKu with the haem-controlled repressor (HCR) eIF-2 alpha kinase from rabbit reticulocytes.
Main Methods:
- Phosphorylation assays using eIF-2 alpha and synthetic peptides.
- Analysis of guanine-nucleotide exchange activity mediated by eIF-2B.
- Cell-free translation system to assess translational inhibition.
- Protein purification (gel filtration, anion exchange, SDS/PAGE).
- Haemin inhibition assays and peptide mapping.
Main Results:
- MKu phosphorylates eIF-2 alpha at Ser51, impairing GDP/GTP exchange by eIF-2B and inhibiting translation.
- Purified MKu contains a 98 kDa protein that autophosphorylates and is inhibited by haemin, similar to HCR.
- Despite similarities, peptide mapping reveals structural differences between MKu and HCR.
Conclusions:
- MKu is a novel eIF-2 alpha kinase in MEL cells that regulates translation initiation.
- MKu is structurally related but distinct from rabbit reticulocyte HCR.
- Haemin regulation is conserved between MKu and HCR.