A functional interleukin 12 receptor complex is composed of two beta-type cytokine receptor subunits

D H Presky1, H Yang, L J Minetti

  • 1Department of Inflammation/Autoimmune Diseases, Hoffmann-La Roche, Inc., Nutley, NJ 07110, USA.

Insights

Researchers identified a new human interleukin-12 receptor beta 2 (huIL-12R beta 2) subunit. This subunit, along with huIL-12R beta 1, forms the high-affinity receptor essential for interleukin-12 (IL-12) signaling.

Area of Science:

  • Immunology
  • Molecular Biology
  • Cell Biology

Background:

  • Interleukin-12 (IL-12) is a key cytokine in immune responses.
  • The IL-12 receptor (IL-12R) mediates IL-12 signaling.
  • Previous studies identified an IL-12R beta subunit (now huIL-12R beta 1).

Purpose of the Study:

  • To identify novel subunits of the human IL-12 receptor.
  • To characterize the function and binding properties of newly identified IL-12R subunits.
  • To elucidate the composition of the high-affinity IL-12 receptor.

Main Methods:

  • cDNA library screening of phytohemagglutinin-activated human lymphoblasts.
  • Expression of receptor subunits in COS-7 and Ba/F3 cells.
  • Binding assays using 125I-labeled human IL-12 (125I-huIL-12).
  • Cell proliferation assays to assess IL-12 responsiveness.

Main Results:

  • A new IL-12R beta subunit, designated huIL-12R beta 2, was identified.
  • huIL-12R beta 2 binds 125I-huIL-12 with low affinity (Kd ~5 nM).
  • Coexpression of huIL-12R beta 1 and huIL-12R beta 2 reconstituted high-affinity IL-12 binding (Kd ~55 pM) and IL-12 responsiveness in Ba/F3 cells.
  • huIL-12R beta 2 is a type I transmembrane protein belonging to the cytokine receptor superfamily.
  • Human and mouse homologs of huIL-12R beta 2 share 68% amino acid identity.

Conclusions:

  • The functional high-affinity IL-12 receptor comprises at least two beta-type cytokine receptor subunits: huIL-12R beta 1 and huIL-12R beta 2.
  • Each subunit independently exhibits low-affinity binding to IL-12.
  • The combination of these subunits is crucial for high-affinity IL-12 binding and signal transduction.

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