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Non-coding and Coding Transcriptional Profiles Are Significantly Altered in Pediatric Retinoblastoma Tumors
Swetha Rajasekaran1,2,3, Lakshmi Dhevi Nagarajha Selvan4, Kathleen Dotts1,2,3
1Department of Molecular Genetics, The Ohio State University, Columbus, OH, United States.
Abstract:
Retinoblastoma is a rare pediatric tumor of the retina, caused by the homozygous loss of the Retinoblastoma 1 (RB1) tumor suppressor gene. Previous microarray studies have identified changes in the expression profiles of coding genes; however, our understanding of how non-coding genes change in this tumor is absent. This is an important area of research, as in many adult malignancies, non-coding genes including LNC-RNAs are used as biomarkers to predict outcome and/or relapse. To establish a complete and in-depth RNA profile, of both coding and non-coding genes, in Retinoblastoma tumors, we conducted RNA-seq from a cohort of tumors and normal retina controls. This analysis identified widespread transcriptional changes in the levels of both coding and non-coding genes. Unexpectedly, we also found rare RNA fusion products resulting from genomic alterations, specific to Retinoblastoma tumor samples. We then determined whether these gene expression changes, of both coding and non-coding genes, were also found in a completely independent Retinoblastoma cohort. Using our dataset, we then profiled the potential effects of deregulated LNC-RNAs on the expression of neighboring genes, the entire genome, and on mRNAs that contain a putative area of homology. This analysis showed that most deregulated LNC-RNAs do not act locally to change the transcriptional environment, but potentially function to modulate genes at distant sites. From this analysis, we selected a strongly down-regulated LNC-RNA in Retinoblastoma, DRAIC, and found that restoring DRAIC RNA levels significantly slowed the growth of the Y79 Retinoblastoma cell line. Collectively, our work has generated the first non-coding RNA profile of Retinoblastoma tumors and has found that these tumors show widespread transcriptional deregulation.
Insights
This study reveals widespread non-coding RNA changes in retinoblastoma (RB1) pediatric eye tumors. Restoring a specific non-coding RNA, DRAIC, slowed tumor cell growth, suggesting potential therapeutic targets.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Retinoblastoma is a pediatric retinal tumor linked to RB1 gene loss.
- Previous studies focused on coding genes, leaving non-coding RNA roles in retinoblastoma unexplored.
- Non-coding RNAs are emerging biomarkers in other cancers.
Purpose of the Study:
- To comprehensively profile coding and non-coding RNA expression in retinoblastoma.
- To investigate the functional impact of deregulated non-coding RNAs in retinoblastoma.
- To identify potential non-coding RNA biomarkers or therapeutic targets for retinoblastoma.
Main Methods:
- RNA sequencing (RNA-seq) on retinoblastoma tumors and normal retina.
- Analysis of coding and non-coding gene expression profiles.
- Validation in an independent retinoblastoma cohort.
- Functional studies on deregulated non-coding RNAs, including DRAIC restoration.
Main Results:
- Identified widespread transcriptional changes in both coding and non-coding genes in retinoblastoma.
- Discovered rare RNA fusion products specific to retinoblastoma tumors.
- Demonstrated that deregulated long non-coding RNAs (LNC-RNAs) primarily affect gene expression at distant sites.
- Found that restoring DRAIC expression significantly inhibited Y79 retinoblastoma cell line growth.
Conclusions:
- This study provides the first non-coding RNA profile for retinoblastoma.
- Retinoblastoma tumors exhibit significant transcriptional deregulation involving non-coding RNAs.
- The down-regulated LNC-RNA DRAIC shows potential as a therapeutic target for retinoblastoma.
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