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Updated: Jun 2, 2026

Utilizing Murine Inducible Telomerase Alleles in the Studies of Tissue Degeneration/Regeneration and Cancer
Published on: April 13, 2015
Butylidenephthalide suppresses human telomerase reverse transcriptase (TERT) in human glioblastomas
Po-Cheng Lin1, Shinn-Zong Lin, Yi-Lin Chen
1Department of Life Science and Graduate Institute of Biotechnology, National Dong Hwa University, Hualien, Taiwan, Republic of China.
Background:
Telomerase is widely expressed in most human cancers, but is almost undetectable in normal somatic cells and is therefore a potential drug target. Using the human telomerase promoter platform, the naturally occurring compound butylidenephthalide (BP) was selected for subsequent investigation of antitumor activity in vitro and in vivo.
Methods:
We treated human glioblastoma cells with BP and found a dose-dependent decrease in human telomerase reverse transcriptase (hTERT) mRNA expression and a concomitant increase in p16 and p21 expression. Because c-Myc and Sp1 are involved in transcriptional regulation of hTERT, the effect of BP on c-Myc and Sp1 expression was examined.
Results:
Using electrophoretic mobility shift assays and western blotting, we showed that BP represses hTERT transcriptional activity via downregulation of Sp1 expression. Using the telomerase repeat amplification protocol, an association between BP concentration and suppression of telomerase activity, induction of human glioblastoma senescence, and inhibition of cellular proliferation was identified. This was supported by a mouse xenograft model, in which BP repressed telomerase and inhibited tumor proliferation, resulting in tumor senescence. Overexpression of hTERT restored telomerase activity in human glioblastoma cells and overcame replicative senescence.
Conclusions:
These findings suggest that BP inhibits proliferation and induces senescence in human glioblastomas by downregulating hTERT expression and consequently telomerase activity. This is the first study to describe regulation of telomerase activity by BP in human glioblastomas.
Insights
Butylidenephthalide (BP) inhibits human glioblastoma growth by downregulating human telomerase reverse transcriptase (hTERT) and telomerase activity, inducing cancer cell senescence. This study highlights BP as a potential therapeutic agent for glioblastomas.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Telomerase is highly expressed in cancers, making it a viable drug target.
- Butylidenephthalide (BP), a natural compound, was investigated for its antitumor properties.
- The human telomerase promoter was used to screen for compounds affecting telomerase activity.
Purpose of the Study:
- To investigate the antitumor activity of butylidenephthalide (BP) in human glioblastomas.
- To elucidate the mechanism by which BP affects telomerase expression and activity.
- To evaluate BP's potential as a therapeutic agent for glioblastoma.
Main Methods:
- Human glioblastoma cells were treated with BP.
- Analysis of human telomerase reverse transcriptase (hTERT) mRNA, p16, and p21 expression.
- Electrophoretic mobility shift assays and western blotting to assess Sp1 and c-Myc expression.
- Telomerase repeat amplification protocol and mouse xenograft models were used.
Main Results:
- BP treatment decreased hTERT mRNA expression and increased p16 and p21 levels in glioblastoma cells.
- BP repressed hTERT transcriptional activity by downregulating Sp1 expression.
- BP suppressed telomerase activity, induced glioblastoma cell senescence, and inhibited proliferation in vitro and in vivo.
- Overexpression of hTERT rescued telomerase activity and senescence.
Conclusions:
- BP inhibits glioblastoma proliferation and induces senescence by downregulating hTERT expression and telomerase activity.
- This is the first study demonstrating BP's regulation of telomerase activity in human glioblastomas.
- BP shows promise as a potential therapeutic agent for glioblastoma treatment.
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