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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.

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.

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