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EZH2 inhibition re-sensitizes multidrug resistant B-cell lymphomas to etoposide mediated apoptosis
Matthew Smonskey1, Elena Lasorsa1, Spencer Rosario2
1Department of Pharmacology and Therapeutics, Roswell Park Cancer Institute, Buffalo, NY, USA.
Abstract:
Reactivation of apoptotic pathways is an attractive strategy for patients with treatment-resistant B-cell lymphoma. The tumor suppressor, p53 is central for apoptotic response to multiple DNA damaging agents used to treat aggressive B-cell lymphomas, including etoposide. It has been demonstrated that etoposide induced DNA damage and therapeutic efficacy is enhanced by combination with inhibitors of the histone methyltransferase, enhancer of zeste homolog 2 (EZH2). Further, EZH2 was identified to regulate cell fate decisions in response to DNA damage. Using B-cell lymphoma cell lines resistant to etoposide induced cell death; we show that p53 is dramatically down regulated and MDMX, a negative regulator of p53, is significantly up regulated. However, these cell lines remain responsive to etoposide mediated DNA damage and exhibit cell cycle inhibition and induction of senescence. Furthermore, chemical inhibition of EZH2 directs DNA damage to a predominant p53 dependent apoptotic response associated with loss of MDMX and BCL-XL. These data provide confirmation of EZH2 in determining cell fate following DNA damage and propose a novel therapeutic strategy for patients with aggressive treatment-resistant B-cell lymphoma.
Insights
In aggressive B-cell lymphomas resistant to etoposide, inhibiting enhancer of zeste homolog 2 (EZH2) restores p53 function, promoting apoptosis. This offers a new therapeutic strategy for treatment-resistant lymphoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Reactivating apoptotic pathways is crucial for treating drug-resistant B-cell lymphomas.
- The tumor suppressor p53 is vital for responding to DNA-damaging agents like etoposide.
- Enhancer of zeste homolog 2 (EZH2) influences cell fate decisions following DNA damage.
Purpose of the Study:
- To investigate the role of EZH2 in etoposide-resistant B-cell lymphoma.
- To explore therapeutic strategies targeting EZH2 in treatment-resistant lymphomas.
Main Methods:
- Utilized etoposide-resistant B-cell lymphoma cell lines.
- Assessed p53 and MDMX expression levels.
- Investigated the effect of EZH2 inhibition on DNA damage response and cell fate.
Main Results:
- Etoposide-resistant cells showed downregulated p53 and upregulated MDMX.
- EZH2 inhibition shifted DNA damage response towards p53-dependent apoptosis.
- EZH2 inhibition led to decreased MDMX and BCL-XL expression.
Conclusions:
- EZH2 plays a critical role in determining cell fate after DNA damage.
- Inhibiting EZH2 represents a potential therapeutic strategy for aggressive, treatment-resistant B-cell lymphomas.
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