Related Experiment Video
Updated: Jun 12, 2026

Differentiation of a Human Neural Stem Cell Line on Three Dimensional Cultures, Analysis of MicroRNA and Putative Target Genes
Published on: April 12, 2015
Nucleoside drugs induce cellular differentiation by caspase-dependent degradation of stem cell factors
Tanja Musch1, Yuva Oz, Frank Lyko
1Division of Epigenetics, DKFZ-ZMBH Alliance, German Cancer Research Center, Heidelberg, Germany.
Background:
Stem cell characteristics are an important feature of human cancer cells and play a major role in the therapy resistance of tumours. Strategies to target cancer stem cells are thus of major importance for cancer therapy. Differentiation therapy by nucleoside drugs represents an attractive approach for the elimination of cancer stem cells. However, even if it is generally assumed that the activity of these drugs is mediated by their ability to modulate epigenetic pathways, their precise mode of action remains to be established. We therefore analysed the potential of three nucleoside analogues to induce differentiation of the embryonic cancer stem cell line NTERA 2 D1 and compared their effect to the natural ligand retinoic acid.
Methodology/Principal Findings:
All nucleoside analogues analyzed, but not retinoic acid, triggered proteolytic degradation of the Polycomb group protein EZH2. Two of them, 3-Deazaneplanocin A (DZNep) and 2'-deoxy-5-azacytidine (decitabine), also induced a decrease in global DNA methylation. Nevertheless, only decitabine and 1beta-arabinofuranosylcytosine (cytarabine) effectively triggered neuronal differentiation of NT2 cells. We show that drug-induced differentiation, in contrast to retinoic acid induction, is caused by caspase activation, which mediates depletion of the stem cell factors NANOG and OCT4. Consistent with this observation, protein degradation and differentiation could be counteracted by co-treatment with caspase inhibitors or by depletion of CASPASE-3 and CASPASE-7 through dsRNA interference. In agreement with this, OCT4 was found to be a direct in-vitro-target of CASPASE-7.
Conclusions/Significance:
We show that drug-induced differentiation is not a consequence of pharmacologic epigenetic modulation, but is induced by the degradation of stem-cell-specific proteins by caspases. Our results thus uncover a novel pathway that induces differentiation of embryonic cancer stem cells and is triggered by the established anticancer drugs cytarabine and decitabine. These findings suggest new approaches for directly targeting the stem cell fraction of human tumours.
Insights
Certain nucleoside drugs, like decitabine and cytarabine, eliminate cancer stem cells by triggering caspase-mediated degradation of key stem cell proteins, not epigenetic changes.
Area of Science:
- Cancer Stem Cell Biology
- Epigenetics
- Drug Discovery
Background:
- Cancer stem cells (CSCs) drive tumor growth and therapy resistance.
- Targeting CSCs is crucial for effective cancer treatment.
- Nucleoside drugs offer a potential differentiation therapy for CSCs, but their mechanism is unclear.
Purpose of the Study:
- To investigate the mechanism of nucleoside analogues in inducing differentiation of embryonic cancer stem cells.
- To compare the effects of nucleoside analogues with retinoic acid.
Main Methods:
- Treatment of NTERA 2 D1 cells with nucleoside analogues (DZNep, decitabine, cytarabine) and retinoic acid.
- Analysis of Polycomb group protein EZH2 degradation.
- Measurement of global DNA methylation levels.
- Assessment of neuronal differentiation.
- Investigation of caspase activation and its role in stem cell factor depletion (NANOG, OCT4).
Main Results:
- Nucleoside analogues, unlike retinoic acid, induced EZH2 degradation.
- Decitabine and DZNep reduced global DNA methylation.
- Decitabine and cytarabine induced neuronal differentiation.
- Drug-induced differentiation involved caspase activation, leading to NANOG and OCT4 depletion.
- Caspase inhibitors or depletion of CASPASE-3/7 blocked differentiation and protein degradation.
Conclusions:
- Drug-induced CSC differentiation is mediated by caspase-dependent protein degradation, not epigenetic modulation.
- This reveals a novel pathway for targeting CSCs using established anticancer drugs like cytarabine and decitabine.
- Findings suggest new therapeutic strategies targeting the CSC fraction in human tumors.
Related Concept Videos
Antiviral Nucleoside Inhibitors
Methods of Nuclear Reprogramming
Stem Cell Niche
Cellular Differentiation
A zygote is a...
Drugs that Destabilize Microtubules
Caspases
