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RNAscope for In situ Detection of Transcriptionally Active Human Papillomavirus in Head and Neck Squamous Cell Carcinoma
Published on: March 11, 2014
Transcriptome sequencing uncovers novel long noncoding and small nucleolar RNAs dysregulated in head and neck
Angela E Zou1, Jonjei Ku1, Thomas K Honda1
1Division of Otolaryngology-Head and Neck Surgery, Department of Surgery, University of California, San Diego, La Jolla, California 92093, USA.
Abstract:
Head and neck squamous cell carcinoma persists as one of the most common and deadly malignancies, with early detection and effective treatment still posing formidable challenges. To expand our currently sparse knowledge of the noncoding alterations involved in the disease and identify potential biomarkers and therapeutic targets, we globally profiled the dysregulation of small nucleolar and long noncoding RNAs in head and neck tumors. Using next-generation RNA-sequencing data from 40 pairs of tumor and matched normal tissues, we found 2808 long noncoding RNA (lncRNA) transcripts significantly differentially expressed by a fold change magnitude ≥2. Meanwhile, RNA-sequencing analysis of 31 tumor-normal pairs yielded 33 significantly dysregulated small nucleolar RNAs (snoRNA). In particular, we identified two dramatically down-regulated lncRNAs and one down-regulated snoRNA whose expression levels correlated significantly with overall patient survival, suggesting their functional significance and clinical relevance in head and neck cancer pathogenesis. We confirmed the dysregulation of these noncoding RNAs in head and neck cancer cell lines derived from different anatomic sites, and determined that ectopic expression of the two lncRNAs inhibited key EMT and stem cell genes and reduced cellular proliferation and migration. As a whole, noncoding RNAs are pervasively dysregulated in head and squamous cell carcinoma. The precise molecular roles of the three transcripts identified warrants further characterization, but our data suggest that they are likely to play substantial roles in head and neck cancer pathogenesis and are significantly associated with patient survival.
Insights
This study reveals widespread noncoding RNA changes in head and neck squamous cell carcinoma. Two long noncoding RNAs (lncRNAs) and one small nucleolar RNA (snoRNA) show potential as biomarkers and therapeutic targets due to their link with patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Head and neck squamous cell carcinoma (HNSCC) remains a significant cause of cancer mortality.
- Early detection and effective treatments for HNSCC are still challenging.
- Knowledge of noncoding alterations in HNSCC is limited, hindering biomarker and therapeutic target identification.
Purpose of the Study:
- To comprehensively profile noncoding RNA dysregulation in HNSCC.
- To identify potential noncoding RNA biomarkers and therapeutic targets for HNSCC.
- To investigate the functional roles of dysregulated noncoding RNAs in HNSCC pathogenesis.
Main Methods:
- Next-generation RNA-sequencing was performed on 40 pairs of HNSCC tumor and matched normal tissues.
- Differential expression analysis identified significantly dysregulated long noncoding RNAs (lncRNAs) and small nucleolar RNAs (snoRNAs).
- Expression levels of key noncoding RNAs were correlated with patient overall survival and validated in HNSCC cell lines.
Main Results:
- 2808 lncRNA transcripts and 33 snoRNAs were found to be significantly dysregulated in HNSCC.
- Two down-regulated lncRNAs and one down-regulated snoRNA showed significant correlation with overall patient survival.
- Ectopic expression of the identified lncRNAs inhibited epithelial-mesenchymal transition (EMT) and stem cell genes, reducing proliferation and migration.
Conclusions:
- Noncoding RNAs are pervasively dysregulated in head and neck squamous cell carcinoma.
- The identified lncRNAs and snoRNA are potential prognostic biomarkers and therapeutic targets for HNSCC.
- Further characterization of these noncoding RNAs is warranted to elucidate their precise roles in HNSCC pathogenesis.
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