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September 1, 1999Journal of Biological Chemistry172 citationsOpen Access

Macrophage Colony-stimulating Factor Promotes Cell Survival through Akt/Protein Kinase B

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TKTodd W. KelleyMGMandy M. GrahamADAndrea I. Doseff

Key Points

  • To delineate the downstream intracellular signaling pathways that mediate cell survival in response to macrophage colony-stimulating factor (M-CSF).
  • Examined signaling mechanisms in human monocytes and engineered NIH 3T3 fibroblasts expressing wild-type human M-CSF receptors (3T3-FMS) or Ras-activation-deficient mutants (3T3-FMS(Y809F)).
  • Assessed receptor tyrosine phosphorylation, PI3K p85 subunit recruitment, and Akt kinase activation under M-CSF exposure.
  • Evaluated cell survival mechanisms using transfection of dominant-negative Akt isoforms, the PI3K inhibitor LY294002, and caspase-9 inhibitors.
  • M-CSF induced receptor tyrosine phosphorylation, recruited the PI3K p85 subunit, and stimulated Akt kinase activity independently of Ras activation.
  • Expression of dominant-negative Akt mutants blocked M-CSF-mediated cell survival in 3T3-FMS fibroblasts.
  • In human monocytes, PI3K inhibition with LY294002 abolished M-CSF-mediated survival, an effect that was partially rescued by caspase-9 inhibitors.

Abstract

The signaling pathways activated by the macrophage colony-stimulating factor (M-CSF) to promote survival of monocyte and macrophage lineage cells are not well established. In an effort to elucidate these pathways, we have used two cell types responsive to M-CSF: NIH 3T3 fibroblasts genetically engineered to express human M-CSF receptors (3T3-FMS cells) and human monocytes. M-CSF treatment induced M-CSF receptor tyrosine phosphorylation and recruitment of the p85 subunit of phosphatidylinositol 3-kinase (PI3K) to these receptors. These M-CSF receptor events correlated with activation of the serine/threonine kinase Akt. To clarify that PI3K products activate Akt in response to M-CSF, NIH 3T3 fibroblasts expressing mutant human M-CSF receptors (3T3-FMS(Y809F)) that fail to activate Ras in response to M-CSF also exhibit increased Akt kinase activity in response to M-CSF challenge. Furthermore, Akt appears to be the primary regulator of survival in 3T3-FMS cells, as transfection of genes encoding dominant-negative Akt isoforms into these fibroblasts blocked M-CSF-induced survival. In normal human monocytes, M-CSF increased the levels of tyrosine-phosphorylated proteins and induced Akt activation in a PI3K-dependent manner. The PI3K inhibitor LY294002 blocked M-CSF-mediated monocyte survival, an effect that was partially restored by caspase-9 inhibitors. These data suggest that M-CSF may induce cell survival through Akt-induced suppression of caspase-9 activation.

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Cite This Study

Kelley et al. (1999) studied this question.

synapsesocial.com/papers/6a0cd72d0094f96266c401cchttps://doi.org/10.1074/jbc.274.37.26393
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