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Published on: February 18, 2020
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
Background:
Nucleolin is one of the major proteins of the nucleolus, but it is also expressed on the cell surface where is serves as a binding protein for variety of ligands implicated in tumorigenesis and angiogenesis. Emerging evidence suggests that the cell-surface expressed nucleolin is a strategic target for an effective and nontoxic cancer therapy.
Methodology/Principal Findings:
By monitoring the expression of nucleolin mRNA, and by measuring the level of nucleolin protein recovered from the surface and nucleus of cells, here we show that the presence of nucleolin at the cell surface is dependent on the constant induction of nucleolin mRNA. Indeed, inhibitors of RNA transcription or translation block expression of surface nucleolin while no apparent effect is observed on the level of nucleolin in the nucleus. The estimated half-life of surface nucleolin is less than one hour, whereas that of nuclear nucleolin is more than 8 hours. Nucleolin mRNA induction is reduced markedly in normal fibroblasts that reach confluence, while it occurs continuously even in post-confluent epithelial tumor cells consistent with their capacity to proliferate without contact inhibition. Interestingly, cold and heat shock induce nucleolin mRNA concomitantly to enhanced mRNA expression of the heat shock protein 70, thus suggesting that surface nucleolin induction also occurs in response to an environmental insult. At the cell surface, one of the main functions of nucleolin is to shuttle specific extracellular ligands by an active transport mechanism, which we show here to be calcium dependent.
Conclusion/Significance:
Our results demonstrate that the expression of surface nucleolin is an early metabolic event coupled with tumor cell proliferation and stress response. The fact that surface nucleolin is constantly and abundantly expressed on the surface of tumor cells, makes them a preferential target for the inhibitory action of anticancer agents that target surface nucleolin.
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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