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3-D Cell Culture System for Studying Invasion and Evaluating Therapeutics in Bladder Cancer
Published on: September 13, 2018
Microarray analyses in bladder cancer cells: inhibition of hTERT expression down-regulates EGFR
Kai Kraemer1, Uta Schmidt, Susanne Fuessel
1Department of Urology, Technical University of Dresden, Dresden, Germany.
Abstract:
The human telomerase reverse transcriptase (hTERT) contributes to the immortal phenotype of the majority of cancers. Targeting hTERT by transfection with antisense oligonucleotides (AS-ODNs) induced immediate growth inhibition in human bladder cancer (BCa) cells. The molecular basis of the antiproliferative capacity of hTERT AS-ODNs was investigated by oligonucleotide microarray analyses and was compared to effects caused by siRNA-mediated knock-down of hTERT in EJ28 BCa cells. Two different AS-ODNs -- both down-regulated the expression of hTERT -- changed the expression of different genes mainly involved in stress response (including EGR1, ATF3 and GDF15), but without an association to telomerase function. This indicates that the immediate growth inhibition was caused, at least in part, by off-target effects. In comparison to that the blockade of the expression of hTERT using 2 different siRNAs was accompanied by the down-regulation of the oncogenes FOS-like antigen 1 (FOSL1) and epidermal growth factor receptor (EGFR), known to be overexpressed in BCa. We show here for the first time that repression of the hTERT transcript number decreased the expression of EGFR both at the mRNA and protein levels, suggesting a potential new function of hTERT in the regulation of EGFR-stimulated proliferation. Furthermore, the suppression of hTERT by siRNAs caused an enhancement of the antiproliferative capacity of the chemotherapeutics mitomycin C and cisplatin. The results presented herein may support the hypothesis that hTERT promotes the growth of tumor cells by mechanisms independent from telomere lengthening. The detailed clarification of these processes will shed light on the question, whether telomerase inhibitors might constitute suitable anticancer tools.
Insights
Targeting human telomerase reverse transcriptase (hTERT) with antisense oligonucleotides showed off-target effects. However, siRNA targeting hTERT reduced cancer growth and enhanced chemotherapy, suggesting hTERT
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Human telomerase reverse transcriptase (hTERT) is crucial for cancer cell immortality.
- Targeting hTERT is a potential strategy for cancer treatment.
Purpose of the Study:
- Investigate the molecular mechanisms of hTERT inhibition in bladder cancer.
- Compare the effects of antisense oligonucleotides (AS-ODNs) and small interfering RNAs (siRNAs) targeting hTERT.
- Determine if hTERT inhibition has anti-cancer effects independent of telomere lengthening.
Main Methods:
- Oligonucleotide microarray analysis.
- siRNA-mediated knockdown of hTERT in EJ28 bladder cancer cells.
- Analysis of gene expression at mRNA and protein levels.
- Assessment of chemotherapy sensitivity.
Main Results:
- hTERT AS-ODNs induced growth inhibition, but primarily through off-target effects on stress response genes.
- siRNA-mediated hTERT suppression downregulated oncogenes FOSL1 and EGFR.
- hTERT repression decreased EGFR expression at both mRNA and protein levels.
- hTERT suppression by siRNAs enhanced the efficacy of mitomycin C and cisplatin.
Conclusions:
- hTERT inhibition by siRNAs has anti-proliferative effects in bladder cancer cells, partly via EGFR downregulation.
- hTERT may promote tumor growth through mechanisms beyond telomere maintenance.
- Telomerase inhibitors could be valuable anticancer agents, warranting further investigation.
