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Updated: Apr 14, 2026

Three-Dimensional 3D Tumor Spheroid Invasion Assay
Published on: May 1, 2015
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.
Introduction:
Focal adhesion kinase (FAK) controls cell growth and survival downstream of integrin-matrix receptors. Upon adhesion loss or FAK inhibition, FAK can translocate to the nucleus. The nucleolus is a non-membrane nuclear structure that regulates ribosome biogenesis and cell proliferation. Nucleostemin (NS), a nucleolar-localized protein, modulates cell cycle progression, stemness, and three-dimensional tumor spheroid formation. The signaling pathways that regulate NS levels in tumors remain undefined.
Methods:
Human breast carcinoma cells were evaluated for growth in culture (adherent and anchorage-independent spheroid) and as orthotopic tumors. FAK signaling was evaluated by pharmacological FAK inhibitor addition (PF-271, IC50~0.1 μM) and by small hairpin RNA (shRNA) knockdown followed by re-expression of FAK wildtype (WT) or a kinase-dead (KD, K454R) FAK point mutant. Immunoblotting was used to evaluate FAK, NS, nucleolar phosphoprotein B23, and nucleolin levels. Total and phosphospecific antibody imunoblotting were used to detect changes in FAK, Akt kinase (Akt also known as protein kinase B), and 4E-binding protein 1 (4E-BP1) phosphorylation, a translation repressor protein and target of the mammalian target of rapamycin (mTOR) complex. Immunohistochemical, co-immunoprecipitation, and cellular fractionation analyses were used to evaluate FAK association with nucleoli.
Results:
Pharmacological (0.1 μM PF-271) or genetic inhibition of FAK activity prevents MDA-MB-231 and 4T1L breast carcinoma growth as spheroids and as orthotopic tumors. FAK inhibition triggers proteasome-mediated decreased NS levels but no changes in other nucleolar proteins such as B23 (nucleophosmin) or nucleolin. Active FAK was associated with purified nucleoli of anchorage-independent cells and present within nucleoli of human invasive ductal carcinoma tumor samples. FAK co-immunoprecipitated with B23 that binds NS and a complex between FAK, NS, Akt, and mTOR was detected. Constitutively-active Akt kinase promoted tumor spheroid growth, stabilized NS levels, and promoted pS65 4E-BP1 phosphorylation in the presence of inhibited FAK. Rapamycin lowered NS levels and inhibited pS65 4E-BP1 phosphorylation in cells with activated Akt-mTOR signaling.
Conclusions:
FAK signaling occurs in the nucleolus, active FAK protects NS, and Akt-mTOR pathway regulates NS protein stability needed for breast carcinoma spheroid and tumor growth.
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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