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Interleukin-3, GM-CSF, and TPA induce distinct phosphorylation events in an interleukin 3-dependent multipotential

P H Sorensen1, A L Mui, S C Murthy

  • 1Terry Fox Laboratory, B.C. Cancer Research Centre, Vancouver, Canada.

Blood
|February 1, 1989
PubMed

Insights

Murine interleukin-3 (mIL-3) and murine granulocyte-macrophage colony-stimulating factor (mGM-CSF) stimulate hematopoietic cell DNA synthesis via protein phosphorylation. Both growth factors induce serine and tyrosine phosphorylation of specific proteins, distinct from protein kinase C activation.

Area of Science:

  • Hematology
  • Cell Signaling
  • Molecular Biology

Background:

  • Hematopoietic growth factors like murine interleukin-3 (mIL-3) are crucial for blood cell development.
  • Understanding the signaling pathways of mIL-3 and murine granulocyte-macrophage colony-stimulating factor (mGM-CSF) is key to hematopoiesis research.

Purpose of the Study:

  • To investigate the mechanism of action of mIL-3 in hematopoietic cells.
  • To determine the role of protein phosphorylation in the signaling pathways of mIL-3 and mGM-CSF.

Main Methods:

  • Utilized the mIL-3-dependent multipotential hematopoietic cell line B6SUtA1.
  • Analyzed protein phosphorylation patterns using metabolic 32P-labeling and anti-phosphotyrosine antibodies after stimulation with mIL-3, mGM-CSF, and TPA.

Main Results:

  • Both mIL-3 and mGM-CSF induced serine phosphorylation of a 68-Kd cytosolic protein.
  • mIL-3 and mGM-CSF stimulated serine phosphorylation of a 68-Kd membrane protein.
  • mIL-3 induced tyrosine phosphorylation of the 68-Kd membrane protein and other proteins (140-, 90-, 55-, 40-Kd); mGM-CSF induced tyrosine phosphorylation of the 90-Kd protein.

Conclusions:

  • Protein phosphorylations on tyrosine and serine residues occur in response to mIL-3 and mGM-CSF.
  • These phosphorylation events are primarily mediated by kinases other than protein kinase C.

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