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Published on: March 31, 2019
Discovery of CTCF-sensitive Cis-spliced fusion RNAs between adjacent genes in human prostate cells
Fujun Qin1, Zhenguo Song2, Mihaela Babiceanu1
1Department of Pathology, School of Medicine, University of Virginia, Charlottesville, Virginia, United States of America.
Abstract:
Genes or their encoded products are not expected to mingle with each other unless in some disease situations. In cancer, a frequent mechanism that can produce gene fusions is chromosomal rearrangement. However, recent discoveries of RNA trans-splicing and cis-splicing between adjacent genes (cis-SAGe) support for other mechanisms in generating fusion RNAs. In our transcriptome analyses of 28 prostate normal and cancer samples, 30% fusion RNAs on average are the transcripts that contain exons belonging to same-strand neighboring genes. These fusion RNAs may be the products of cis-SAGe, which was previously thought to be rare. To validate this finding and to better understand the phenomenon, we used LNCaP, a prostate cell line as a model, and identified 16 additional cis-SAGe events by silencing transcription factor CTCF and paired-end RNA sequencing. About half of the fusions are expressed at a significant level compared to their parental genes. Silencing one of the in-frame fusions resulted in reduced cell motility. Most out-of-frame fusions are likely to function as non-coding RNAs. The majority of the 16 fusions are also detected in other prostate cell lines, as well as in the 14 clinical prostate normal and cancer pairs. By studying the features associated with these fusions, we developed a set of rules: 1) the parental genes are same-strand-neighboring genes; 2) the distance between the genes is within 30kb; 3) the 5' genes are actively transcribing; and 4) the chimeras tend to have the second-to-last exon in the 5' genes joined to the second exon in the 3' genes. We then randomly selected 20 neighboring genes in the genome, and detected four fusion events using these rules in prostate cancer and non-cancerous cells. These results suggest that splicing between neighboring gene transcripts is a rather frequent phenomenon, and it is not a feature unique to cancer cells.
Insights
Splicing between neighboring genes generates fusion RNAs, a phenomenon previously thought rare. This study reveals cis-splicing between adjacent genes (cis-SAGe) is common in prostate cells, impacting cell motility and occurring in both normal and cancerous tissues.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- Gene fusions are typically associated with chromosomal rearrangements in cancer.
- Emerging evidence suggests RNA splicing mechanisms, including cis-splicing between adjacent genes (cis-SAGe), can also produce fusion RNAs.
- The prevalence and functional significance of cis-SAGe in normal and cancerous tissues remain underexplored.
Purpose of the Study:
- To investigate the frequency and characteristics of fusion RNAs arising from cis-SAGe in prostate tissues.
- To validate cis-SAGe as a mechanism for generating fusion RNAs and assess their functional impact.
- To establish predictive rules for identifying cis-SAGe events.
Main Methods:
- Transcriptome analysis of 28 prostate normal and cancer samples.
- Experimental validation using LNCaP prostate cell line, including CTCF silencing and paired-end RNA sequencing.
- Development and application of rules to predict cis-SAGe events in neighboring genes.
Main Results:
- Approximately 30% of fusion RNAs in analyzed samples originated from same-strand neighboring genes, likely via cis-SAGe.
- 16 novel cis-SAGe events were identified, with about half expressed at significant levels; silencing an in-frame fusion reduced cell motility.
- A set of four rules was developed to predict cis-SAGe events, successfully identifying four events in a random selection of neighboring genes.
Conclusions:
- Splicing between neighboring gene transcripts (cis-SAGe) is a frequent mechanism for generating fusion RNAs, not limited to cancer.
- cis-SAGe-derived fusion RNAs can be expressed at significant levels and influence cellular functions like motility.
- The findings expand the understanding of gene fusion mechanisms and suggest cis-SAGe is a widespread biological phenomenon.
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