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Disulfide bond assignment and identification of regions required for functional activity of oncostatin M

J C Kallestad1, M Shoyab, P S Linsley

  • 1Oncogen Division, Bristol-Myers Squibb Pharmaceutical Research Institute, Seattle, Washington 98121.

Insights

This study identifies key structural regions of Oncostatin M (OSM) essential for its tumor cell growth inhibition and receptor binding. Specific disulfide bonds and carboxyl-terminal domains are crucial for OSM

Area of Science:

  • Molecular Biology
  • Cellular Biology
  • Biochemistry

Background:

  • Oncostatin M (OSM) is a cytokine with diverse biological activities, including tumor cell growth inhibition.
  • Understanding OSM's structure-function relationship is key to elucidating its mechanisms of action.

Purpose of the Study:

  • To determine the disulfide bonding pattern of recombinant OSM.
  • To identify regions of OSM critical for receptor binding and growth inhibitory activities using site-directed mutagenesis.

Main Methods:

  • Site-directed mutagenesis was employed to create various OSM mutants.
  • Disulfide bonding patterns were analyzed.
  • Growth inhibitory and radioreceptor assays were performed to assess mutant activity.

Main Results:

  • Two intramolecular disulfide bonds (C6-C127 and C49-C167) were identified.
  • Mutations at C49 and C167 abolished OSM activity.
  • A carboxyl-terminal amphiphilic domain and specific residues (F176, F184) were found essential for activity.
  • A deletion mutant (delta 87-90) showed enhanced activity.

Conclusions:

  • Biological activity of OSM relies on discontinuous regions, including those near the C49-C167 disulfide bond and a carboxyl-terminal amphiphilic helix.
  • These findings contribute to understanding cytokine-receptor interactions involving carboxyl-terminal amphiphilic helices.

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