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Mitotically-Associated lncRNA (MANCR) Affects Genomic Stability and Cell Division in Aggressive Breast Cancer
Kirsten M Tracy1, Coralee E Tye1, Prachi N Ghule1
1Department of Biochemistry and University of Vermont Cancer Center, The University of Vermont Larner College of Medicine, Burlington, Vermont.
Abstract:
Aggressive breast cancer is difficult to treat as it is unresponsive to many hormone-based therapies; therefore, it is imperative to identify novel, targetable regulators of progression. Long non-coding RNAs (lncRNA) are important regulators in breast cancer and have great potential as therapeutic targets; however, little is known about how the majority of lncRNAs function within breast cancer. This study characterizes a novel lncRNA, MANCR (mitotically-associated long noncoding RNA; LINC00704), which is upregulated in breast cancer patient specimens and cells. Depletion of MANCR in triple-negative breast cancer cells significantly decreases cell proliferation and viability, with concomitant increases in DNA damage. Transcriptome analysis, based on RNA sequencing, following MANCR knockdown reveals significant differences in the expression of >2,000 transcripts, and gene set enrichment analysis identifies changes in multiple categories related to cell-cycle regulation. Furthermore, MANCR expression is highest in mitotic cells by both RT-qPCR and RNA in situ hybridization. Consistent with a role in cell-cycle regulation, MANCR-depleted cells have a lower mitotic index and higher incidences of defective cytokinesis and cell death. Taken together, these data reveal a role for the novel lncRNA, MANCR, in genomic stability of aggressive breast cancer, and identify it as a potential therapeutic target.Implications: The novel lncRNA, MANCR (LINC00704), is upregulated in breast cancer and is functionally linked with cell proliferation, viability, and genomic stability. Mol Cancer Res; 16(4); 587-98. ©2018 AACR.
Insights
The novel long non-coding RNA MANCR (LINC00704) is elevated in aggressive breast cancer. Depleting MANCR reduces cancer cell growth and DNA damage, highlighting its potential as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Aggressive breast cancer requires novel therapeutic targets due to resistance to standard treatments.
- Long non-coding RNAs (lncRNAs) are emerging as critical regulators in cancer progression.
- The specific roles of most lncRNAs in breast cancer remain largely uncharacterized.
Purpose of the Study:
- To characterize the function of the novel lncRNA MANCR (LINC00704) in aggressive breast cancer.
- To investigate MANCR's potential as a therapeutic target for breast cancer treatment.
Main Methods:
- Quantitative real-time PCR (RT-qPCR) and RNA in situ hybridization to assess MANCR expression.
- MANCR depletion in triple-negative breast cancer cells via knockdown.
- RNA sequencing and gene set enrichment analysis to identify downstream effects of MANCR knockdown.
- Assessment of cell proliferation, viability, DNA damage, mitotic index, and cytokinesis.
Main Results:
- MANCR (LINC00704) is upregulated in breast cancer specimens and cells.
- MANCR depletion significantly reduces proliferation and viability while increasing DNA damage in cancer cells.
- MANCR knockdown alters expression of over 2,000 transcripts, impacting cell-cycle regulation.
- MANCR is predominantly expressed in mitotic cells, and its depletion lowers mitotic index and increases cell death.
Conclusions:
- The lncRNA MANCR plays a crucial role in maintaining genomic stability in aggressive breast cancer.
- MANCR is functionally linked to cell proliferation, viability, and cell-cycle regulation.
- MANCR represents a promising novel therapeutic target for aggressive breast cancer.
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