FAK activity protects nucleostemin in facilitating breast cancer spheroid and tumor growth

Isabelle Tancioni1, Nichol L G Miller2,3, Sean Uryu4

  • 1Department of Reproductive Medicine, University of California San Diego, Moores Cancer Center, 3855 Health Sciences Dr, La Jolla, CA, 92093, USA. itancioni@ucsd.edu.

Abstract

Insights

Focal adhesion kinase (FAK) in the nucleolus protects Nucleostemin (NS), promoting breast cancer growth. Inhibiting FAK or the Akt-mTOR pathway reduces NS levels, hindering tumor progression.

Area of Science:

  • Cell Biology
  • Cancer Research
  • Molecular Signaling

Background:

  • Focal adhesion kinase (FAK) regulates cell growth and survival, and can translocate to the nucleus upon adhesion loss or inhibition.
  • Nucleostemin (NS) is a nucleolar protein crucial for cell cycle progression, stemness, and tumor spheroid formation.
  • Signaling pathways governing NS levels in tumors are not well understood.

Purpose of the Study:

  • To investigate the role of FAK signaling in the nucleolus.
  • To determine the impact of FAK inhibition on Nucleostemin (NS) levels and breast carcinoma growth.
  • To elucidate the involvement of the Akt-mTOR pathway in regulating NS stability.

Main Methods:

  • Human breast carcinoma cells were assessed for growth in vitro and in vivo.
  • FAK signaling was modulated using a pharmacological inhibitor (PF-271) and genetic knockdown (shRNA).
  • Protein levels and phosphorylation states of FAK, NS, B23, nucleolin, Akt, and 4E-BP1 were analyzed via immunoblotting; FAK localization and interactions were studied using immunohistochemistry and co-immunoprecipitation.

Main Results:

  • FAK inhibition prevented breast carcinoma spheroid and tumor growth.
  • FAK inhibition led to proteasome-mediated reduction in NS levels, without affecting B23 or nucleolin.
  • Active FAK localized to the nucleolus, co-immunoprecipitated with B23, and formed a complex with NS, Akt, and mTOR; Akt-mTOR signaling influenced NS stability.

Conclusions:

  • FAK signaling is active within the nucleolus.
  • Active FAK protects NS from degradation, supporting breast carcinoma growth.
  • The Akt-mTOR pathway regulates NS protein stability, which is essential for tumor progression.

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