TNFAIP8: a new effector for Galpha(i) coupling to reduce cell death and induce cell transformation

Benoit Laliberté1, Ariel M Wilson, Houman Nafisi

  • 1Ottawa Hospital Research Institute (Neuroscience), University of Ottawa, Ottawa, ON, Canada.

Insights

Tumor necrosis factor-alpha (TNFα)-induced protein 8 (TNFAIP8) interacts with Gαi proteins to promote cellular transformation. TNFAIP8 is crucial for Gαi-dependent transformation, offering a potential target for inhibiting cancer progression.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Oncology

Background:

  • Gαi-coupled receptors drive cellular transformation through poorly understood mechanisms.
  • Previous work identified the dopamine-D2short (D2S) receptor signaling via Gαi3 in cell transformation.
  • Identifying novel Gαi effectors is critical for understanding transformation pathways.

Purpose of the Study:

  • To identify new Gαi effectors involved in cellular transformation.
  • To investigate the role of TNFAIP8 in Gαi-dependent transformation induced by the D2S receptor.
  • To elucidate the mechanism by which TNFAIP8 mediates transformation.

Main Methods:

  • Yeast two-hybrid screening using activated Gαi3-Q204L as bait.
  • Interaction assays including yeast mating, in vitro pull-down, co-immunoprecipitation, and BRET.
  • Cellular assays involving antisense-mediated depletion of TNFAIP8 and analysis of foci formation, cAMP signaling, and TNFα-induced cell death.

Main Results:

  • TNFAIP8 was identified as a Gαi-interacting protein, with preferential binding to activated Gαi.
  • Depletion of TNFAIP8 inhibited spontaneous and D2S-induced foci formation, essential for transformation.
  • D2S receptor activation protected cells from TNFα-induced cell death via a caspase-independent pathway, dependent on TNFAIP8.

Conclusions:

  • TNFAIP8 is a novel Gαi effector that plays a critical role in Gαi-dependent cellular transformation.
  • The Gαi-TNFAIP8 interaction promotes transformation by mediating a caspase-independent survival signal against TNFα-induced cell death.
  • Targeting the Gαi-TNFAIP8 pathway presents a potential strategy for inhibiting oncogenic transformation.

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