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Generation and biological characterization of membrane-bound, uncleavable murine tumor necrosis factor

E Decoster1, B Vanhaesebroeck, P Vandenabeele

  • 1Laboratory of Molecular Biology, Gent University, Belgium.

Insights

Tumor necrosis factor (TNF) exists in membrane-bound and soluble forms. Mutational analysis revealed Lys11 is critical for cleavage, with membrane-bound TNF showing similar biological activity but reduced cytotoxicity.

Area of Science:

  • Immunology
  • Molecular Biology
  • Cell Biology

Background:

  • Tumor necrosis factor (TNF) is a cytokine produced as a membrane-bound proform.
  • Proteolytic cleavage releases the mature, soluble 17-kDa TNF subunit.
  • Understanding the biological activity of membrane-bound versus soluble TNF is crucial.

Purpose of the Study:

  • To compare the biological activity of membrane-bound and soluble TNF.
  • To investigate the role of cleavage sites in TNF maturation and function.
  • To identify key residues involved in TNF processing.

Main Methods:

  • Mutational analysis of potential cleavage sites in murine TNF.
  • Gene transfection in L929 cells to assess biological activity.
  • Site-directed mutagenesis to alter specific amino acid residues.

Main Results:

  • Deletion mutants indicated alternative cleavage sites exist.
  • TNF delta 1-12 and Lys11-to-Glu mutants resulted in membrane-bound TNF.
  • Both soluble and membrane-bound TNF induced apoptosis, proliferation, and cytokine production via TNF receptors.
  • Membrane-bound TNF exhibited reduced cytotoxicity in U937 cells.

Conclusions:

  • Lys11 is a critical residue for alternative TNF cleavage.
  • Membrane-bound TNF possesses biological activities comparable to soluble TNF.
  • Differences in receptor interaction, particularly ligand passing, affect membrane-bound TNF's cytotoxic efficacy.

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