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Published on: July 25, 2020
Epigenetic reprogramming of breast cancer cells with oocyte extracts
Cinzia Allegrucci1, Michael D Rushton, James E Dixon
1Centre for Genetics and Genomics, School of Biology, University of Nottingham, Queens Medical Centre, Nottingham, UK. cinzia.allegrucci@nottingham.ac.uk
Background:
Breast cancer is a disease characterised by both genetic and epigenetic alterations. Epigenetic silencing of tumour suppressor genes is an early event in breast carcinogenesis and reversion of gene silencing by epigenetic reprogramming can provide clues to the mechanisms responsible for tumour initiation and progression. In this study we apply the reprogramming capacity of oocytes to cancer cells in order to study breast oncogenesis.
Results:
We show that breast cancer cells can be directly reprogrammed by amphibian oocyte extracts. The reprogramming effect, after six hours of treatment, in the absence of DNA replication, includes DNA demethylation and removal of repressive histone marks at the promoters of tumour suppressor genes; also, expression of the silenced genes is re-activated in response to treatment. This activity is specific to oocytes as it is not elicited by extracts from ovulated eggs, and is present at very limited levels in extracts from mouse embryonic stem cells. Epigenetic reprogramming in oocyte extracts results in reduction of cancer cell growth under anchorage independent conditions and a reduction in tumour growth in mouse xenografts.
Conclusions:
This study presents a new method to investigate tumour reversion by epigenetic reprogramming. After testing extracts from different sources, we found that axolotl oocyte extracts possess superior reprogramming ability, which reverses epigenetic silencing of tumour suppressor genes and tumorigenicity of breast cancer cells in a mouse xenograft model. Therefore this system can be extremely valuable for dissecting the mechanisms involved in tumour suppressor gene silencing and identifying molecular activities capable of arresting tumour growth. These applications can ultimately shed light on the contribution of epigenetic alterations in breast cancer and advance the development of epigenetic therapies.
Insights
Axolotl oocyte extracts can reprogram breast cancer cells, reversing epigenetic silencing of tumor suppressor genes and reducing tumor growth. This discovery offers new avenues for understanding and treating breast cancer through epigenetic therapies.
Area of Science:
- Reproductive Biology
- Cancer Biology
- Epigenetics
Background:
- Breast cancer involves genetic and epigenetic changes.
- Epigenetic silencing of tumor suppressor genes is key in breast cancer development.
- Reprogramming gene silencing can reveal tumor initiation mechanisms.
Purpose of the Study:
- To investigate breast oncogenesis using the reprogramming capacity of oocytes.
- To explore epigenetic reprogramming of breast cancer cells.
Main Methods:
- Treatment of breast cancer cells with amphibian oocyte extracts.
- Analysis of DNA demethylation and histone modifications.
- Assessment of gene re-expression and cancer cell growth.
Main Results:
- Oocyte extracts reprogrammed breast cancer cells, demethylating DNA and removing repressive histone marks.
- Silenced tumor suppressor genes were re-activated without DNA replication.
- Axolotl oocyte extracts showed superior reprogramming ability, reducing cancer cell growth and tumor size in xenografts.
Conclusions:
- A novel method for investigating tumor reversion via epigenetic reprogramming was developed.
- Axolotl oocyte extracts effectively reverse epigenetic silencing and reduce breast cancer cell tumorigenicity.
- This system aids in dissecting tumor suppressor gene silencing and identifying growth-arresting molecular activities, advancing epigenetic therapy development.
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