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A Simple Method to Identify Kinases That Regulate Embryonic Stem Cell Pluripotency by High-throughput Inhibitor Screening
Published on: May 12, 2017
Pharmacological inhibition of EZH2 as a promising differentiation therapy in embryonal RMS
Roberta Ciarapica1, Elena Carcarino, Laura Adesso
1Department of Oncohematology, Laboratory of Angiogenesis, Ospedale Pediatrico Bambino Gesù, IRCCS, Piazza S, Onofrio 4, 00165 Rome, Italy. roberta.ciarapica@yahoo.com.
Background:
Embryonal Rhabdomyosarcoma (RMS) is a pediatric soft-tissue sarcoma derived from myogenic precursors that is characterized by a good prognosis in patients with localized disease. Conversely, metastatic tumors often relapse, leading to a dismal outcome. The histone methyltransferase EZH2 epigenetically suppresses skeletal muscle differentiation by repressing the transcription of myogenic genes. Moreover, de-regulated EZH2 expression has been extensively implied in human cancers. We have previously shown that EZH2 is aberrantly over-expressed in RMS primary tumors and cell lines. Moreover, it has been recently reported that EZH2 silencing in RD cells, a recurrence-derived embryonal RMS cell line, favors myofiber-like structures formation in a pro-differentiation context. Here we evaluate whether similar effects can be obtained also in the presence of growth factor-supplemented medium (GM), that mimics a pro-proliferative microenvironment, and by pharmacological targeting of EZH2 in RD cells and in RD tumor xenografts.
Methods:
Embryonal RMS RD cells were cultured in GM and silenced for EZH2 or treated with either the S-adenosylhomocysteine hydrolase inhibitor 3-deazaneplanocin A (DZNep) that induces EZH2 degradation, or with a new class of catalytic EZH2 inhibitors, MC1948 and MC1945, which block the catalytic activity of EZH2. RD cell proliferation and myogenic differentiation were evaluated both in vitro and in vivo.
Results:
Here we show that EZH2 protein was abnormally expressed in 19 out of 19 (100%) embryonal RMS primary tumors and cell lines compared to their normal counterparts. Genetic down-regulation of EZH2 by silencing in GM condition reduced RD cell proliferation up-regulating p21Cip1. It also resulted in myogenic-like differentiation testified by the up-regulation of myogenic markers Myogenin, MCK and MHC. These effects were reverted by enforced over-expression of a murine Ezh2, highlighting an EZH2-specific effect. Pharmacological inhibition of EZH2 using either DZNep or MC inhibitors phenocopied the genetic knockdown of EZH2 preventing cell proliferation and restoring myogenic differentiation both in vitro and in vivo.
Conclusions:
These results provide evidence that EZH2 function can be counteracted by pharmacological inhibition in embryonal RMS blocking proliferation even in a pro-proliferative context. They also suggest that this approach could be exploited as a differentiation therapy in adjuvant therapeutic intervention for embryonal RMS.
Insights
Pharmacological inhibition of EZH2 (Enhancer of Zeste homolog 2) blocks proliferation and promotes differentiation in embryonal rhabdomyosarcoma (RMS). This suggests EZH2 inhibitors could be a novel differentiation therapy for RMS.
Area of Science:
- Oncology
- Epigenetics
- Pediatric Cancer Research
Background:
- Embryonal rhabdomyosarcoma (RMS) is a pediatric soft-tissue sarcoma with poor outcomes for metastatic disease.
- EZH2 epigenetically suppresses muscle differentiation and is overexpressed in RMS.
- Previous studies showed EZH2 silencing promotes differentiation in RMS cells.
Purpose of the Study:
- To investigate the effects of EZH2 targeting in a pro-proliferative environment for embryonal RMS.
- To evaluate both genetic and pharmacological inhibition of EZH2 in vitro and in vivo.
Main Methods:
- Embryonal RMS RD cells were cultured in growth medium (GM).
- EZH2 was silenced or inhibited using DZNep or MC1948/MC1945.
- Cell proliferation and myogenic differentiation were assessed in vitro and in vivo.
Main Results:
- EZH2 was overexpressed in 100% of tested RMS tumors and cell lines.
- EZH2 downregulation reduced proliferation and induced myogenic differentiation.
- Pharmacological EZH2 inhibition mimicked genetic knockdown effects, blocking proliferation and restoring differentiation.
Conclusions:
- EZH2 inhibition effectively blocks proliferation in embryonal RMS, even in pro-proliferative conditions.
- Pharmacological targeting of EZH2 presents a potential differentiation therapy strategy for embryonal RMS.

