EID3 Promotes Glioma Cell Proliferation and Survival by Inactivating AMPKα1
Yaoxian Xiang1,2,3, Lei Zhu4, Zijian He5
1Department of Hand Surgery, Huashan Hospital, Fudan University, Shanghai, China.
Objective:
EID3 (EP300-interacting inhibitor of differentiation) was identified as a novel member of EID family and plays a pivotal role in colorectal cancer development. However, its role in glioma remained elusive. In current study, we identified EID3 as a novel oncogenic molecule in human glioma and is critical for glioma cell survival, proliferation and invasion.
Methods:
A total of five patients with glioma were recruited in present study and fresh glioma samples were removed from patients. Four weeks old male non-obese diabetic severe combined immune deficiency (NOD/SCID) mice were used as transplant recipient models. The subcutaneous tumor size was calculated and recorded every week with vernier caliper. EID3 and AMP-activated protein kinase α1 (AMPKα1) expression levels were confirmed by real-time polymerase chain reaction and Western blot assays. Colony formation assays were performed to evaluate cell proliferation. Methyl thiazolyl tetrazolium (MTT) assays were performed for cell viability assessment. Trypan blue staining approach was applied for cell death assessment. Cell Apoptosis DNA ELISA Detection Kit was used for apoptosis assessment.
Results:
EID3 was preferentially expressed in glioma tissues/cells, while undetectable in astrocytes, neuronal cells, or normal brain tissues. EID3 knocking down significantly hindered glioma cell proliferation and invasion, as well as induced reduction of cell viability, apoptosis and cell death. EID3 knocking down also greatly inhibited tumor growth in SCID mice. Knocking down of AMPKα1 could effectively rescue glioma cells from apoptosis and cell death caused by EID3 absence, indicating that AMPKα1 acted as a key downstream regulator of EID3 and mediated suppression effects caused by EID3 knocking down inhibition. These findings were confirmed in glioma cells generated patient-derived xenograft models. AMPKα1 protein levels were affected by MG132 treatment in glioma, which suggested EID3 might down regulate AMPKα1 through protein degradation.
Conclusion:
Collectively, our study demonstrated that EID3 promoted glioma cell proliferation and survival by inhibiting AMPKα1 expression. Targeting EID3 might represent a promising strategy for treating glioma.
Insights
EP300-interacting inhibitor of differentiation 3 (EID3) drives glioma growth by suppressing AMP-activated protein kinase α1 (AMPKα1). Inhibiting EID3 may offer a new glioma treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- EP300-interacting inhibitor of differentiation 3 (EID3) is implicated in colorectal cancer.
- The role of EID3 in glioma pathogenesis was previously unknown.
Purpose of the Study:
- To investigate the function of EID3 in human glioma.
- To identify EID3 as a potential therapeutic target for glioma.
Main Methods:
- Analysis of EID3 expression in patient-derived glioma tissues and cell lines.
- In vitro assays assessing cell proliferation, viability, and apoptosis.
- In vivo studies using xenograft models in SCID mice.
- Real-time PCR, Western blot, and MTT assays were employed.
Main Results:
- EID3 is overexpressed in glioma tissues and cells compared to normal brain tissues.
- EID3 knockdown suppressed glioma cell proliferation, invasion, viability, and induced apoptosis.
- EID3 knockdown inhibited tumor growth in vivo.
- AMP-activated protein kinase α1 (AMPKα1) was identified as a downstream mediator of EID3's oncogenic effects.
Conclusions:
- EID3 promotes glioma cell proliferation and survival by inhibiting AMPKα1.
- Targeting EID3 presents a potential therapeutic strategy for glioma treatment.
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