Surface expressed nucleolin is constantly induced in tumor cells to mediate calcium-dependent ligand internalization

Ara G Hovanessian1, Calaiselvy Soundaramourty, Diala El Khoury

  • 1CNRS-Université Paris Descartes, Unité Régulation de la Transcription de Maladies Génétique, Paris, France. ara.hovanessian@parisdescartes.fr

Plos One
|January 5, 2011
PubMed
Abstract

Insights

Cell-surface nucleolin, crucial for tumor growth and stress response, is a promising target for novel cancer therapies. Its expression is linked to tumor cell proliferation and is dependent on nucleolin mRNA induction.

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Cell Biology

Background:

  • Nucleolin is a major nucleolar protein also found on the cell surface.
  • Cell-surface nucleolin acts as a binding protein for ligands involved in tumorigenesis and angiogenesis.
  • Emerging evidence highlights cell-surface nucleolin as a potential target for effective, non-toxic cancer therapy.

Purpose of the Study:

  • To investigate the regulation and characteristics of cell-surface nucleolin expression.
  • To explore the role of cell-surface nucleolin in tumor cell proliferation and response to environmental stress.
  • To evaluate the potential of targeting cell-surface nucleolin in cancer treatment.

Main Methods:

  • Monitoring nucleolin mRNA expression.
  • Quantifying cell-surface and nuclear nucleolin protein levels.
  • Utilizing inhibitors of RNA transcription and translation.
  • Assessing nucleolin half-life in the nucleus and at the cell surface.
  • Investigating the effect of cell confluence and environmental stressors (heat/cold shock) on nucleolin expression.
  • Examining the calcium-dependent mechanism of ligand transport by surface nucleolin.

Main Results:

  • Cell-surface nucleolin presence depends on continuous nucleolin mRNA induction; transcription/translation inhibitors block its surface expression.
  • Surface nucleolin has a short half-life (<1 hour) compared to nuclear nucleolin (>8 hours).
  • Nucleolin mRNA induction is sustained in tumor cells, unlike normal fibroblasts, and is induced by heat/cold shock.
  • Cell-surface nucleolin actively transports extracellular ligands via a calcium-dependent mechanism.

Conclusions:

  • Surface nucleolin expression is an early metabolic event linked to tumor cell proliferation and stress response.
  • Constant and abundant surface expression makes tumor cells a preferential target for anti-cancer agents.
  • Targeting surface nucleolin offers a strategic approach for novel cancer therapies.

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