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Generation of Cancer Cell Clones to Visualize Telomeric Repeat-containing RNA TERRA Expressed from a Single Telomere in Living Cells
Published on: January 17, 2019
Telomere Transcripts Target Telomerase in Human Cancer Cells
Theresa Kreilmeier1,2, Doris Mejri3, Marlene Hauck4
1Institute of Cancer Research, Comprehensive Cancer Center, Medical University of Vienna, Borschkegasse 8a, Vienna 1090, Austria. theresa.kreilmeier@gmx.at.
Abstract:
Long non-coding transcripts from telomeres, called telomeric repeat-containing RNA (TERRA), were identified as blocking telomerase activity (TA), a telomere maintenance mechanism (TMM), in tumors. We expressed recombinant TERRA transcripts in tumor cell lines with TA and with alternative lengthening of telomeres (ALT) to study effects on TMM and cell growth. Adeno- and lentivirus constructs (AV and LV) were established for transient and stable expression of approximately 130 units of telomere hexanucleotide repeats under control of cytomegalovirus (CMV) and human RNase P RNA H1 (hH1) promoters with and without polyadenylation, respectively. Six human tumor cell lines either using telomerase or ALT were infected and analyzed for TA levels. Pre-infection cells using telomerase had 1%-3% of the TERRA expression levels of ALT cells. AV and LV expression of recombinant TERRA in telomerase positive cells showed a 1.3-2.6 fold increase in TERRA levels, and a decrease in TA of 25%-58%. Dominant-negative or small hairpin RNA (shRNA) viral expression against human telomerase reverse transcriptase (hTERT) results in senescence, not induced by TERRA expression. Population doubling time, cell viability and TL (telomere length) were not impacted by ectopic TERRA expression. Clonal growth was reduced by TERRA expression in TA but not ALT cell lines. ALT cells were not affected by treatments applied. Established cell models and tools may be used to better understand the role of TERRA in the cell, especially for targeting telomerase.
Insights
Telomeric repeat-containing RNA (TERRA) can inhibit telomerase activity in tumor cells. Recombinant TERRA expression reduced telomerase activity and clonal growth in telomerase-dependent cells but did not affect telomere length or viability.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- Long non-coding RNAs, telomeric repeat-containing RNA (TERRA), are known to regulate telomere maintenance mechanisms (TMMs).
- TERRA has been implicated in blocking telomerase activity (TA), a key TMM in many tumors.
Purpose of the Study:
- To investigate the effects of recombinant TERRA expression on TMMs and cell growth in tumor cell lines.
- To compare the impact of TERRA in telomerase-positive versus alternative lengthening of telomeres (ALT) cancer cells.
Main Methods:
- Established adeno- and lentivirus constructs for expressing recombinant TERRA in six human tumor cell lines.
- Analyzed telomerase activity, TERRA expression levels, cell viability, population doubling time, telomere length (TL), and clonal growth post-infection.
- Utilized dominant-negative or shRNA constructs targeting hTERT as controls.
Main Results:
- TERRA expression in telomerase-positive cells increased TERRA levels 1.3-2.6 fold, decreasing TA by 25%-58%.
- Ectopic TERRA expression did not impact population doubling time, cell viability, or TL.
- Clonal growth was reduced in TA cells but unaffected in ALT cells; ALT cells were generally unresponsive to treatments.
Conclusions:
- TERRA can inhibit telomerase activity and reduce clonal growth in a telomere maintenance mechanism-dependent manner.
- Established viral expression systems provide tools to study TERRA's role in cellular processes.
- TERRA represents a potential therapeutic target for telomerase-dependent cancers.
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