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Published on: March 31, 2019
Role of CTCF in Regulating SLC45A3-ELK4 Chimeric RNA
Fujun Qin1, Yansu Song1, Yanmei Zhang2
1Department of Pathology, School of Medicine, University of Virginia, Charlottesville, Virginia, United States of America.
Abstract:
The chimeric RNA, SLC45A3-ELK4, was found to be a product of cis-splicing between the two adjacent genes (cis-SAGe). Despite the biological and clinical significance of SLC45A3-ELK4, its generating mechanism has not been elucidated. It was shown in one cell line that the binding of transcription factor CTCF to the insulators located at or near the gene boundaries, inversely correlates with the level of the chimera. To investigate the mechanism of such cis-SAGe events, we sequenced potential regions that may play a role in such transcriptional read-through. We could not detect mutations at the transcription termination site, insulator sites, splicing sites, or within CTCF itself in LNCaP cells, thus suggesting a "soft-wired" mechanism in regulating the cis-SAGe event. To investigate the role CTCF plays in regulating the chimeric RNA expression, we compared the levels of CTCF binding to the insulators in different cell lines, as well as clinical samples. Surprisingly, we did not find an inverse correlation between CTCF level, or its bindings to the insulators and SLC45A3-ELK4 expression among different samples. However, in three prostate cancer cell lines, different environmental factors can cause the expression levels of the chimeric RNA to change, and these changes do inversely correlate with CTCF level, and/or its bindings to the insulators. We thus conclude that CTCF and its bindings to the insulators are not the primary reasons for differential SLC45A3-ELK4 expression in different cell lines, or clinical cases. However, they are the likely mechanism for the same cells to respond to different environmental cues, in order to regulate the expression of SLC45A3-ELK4 chimeric RNA. This response to different environmental cues is not general to other cis-SAGe events, as we only found one out of 16 newly identified chimeric RNAs showing a pattern similar to SLC45A3-ELK4.
Insights
The chimeric RNA SLC45A3-ELK4 is formed by cis-splicing. CTCF binding to insulators does not explain its expression differences across samples, but may mediate environmental responses in prostate cancer cells.
Area of Science:
- Molecular biology
- Genetics
- Cancer research
Background:
- The SLC45A3-ELK4 chimeric RNA arises from cis-splicing between adjacent genes (cis-SAGe).
- Its biological and clinical significance is established, yet the generation mechanism remains unclear.
- Previous studies suggested transcription factor CTCF binding to insulators inversely correlates with chimera levels in one cell line.
Purpose of the Study:
- To elucidate the mechanism of SLC45A3-ELK4 cis-SAGe events.
- To investigate the role of CTCF binding to insulators in regulating chimera expression.
- To determine if CTCF mediates environmental responses affecting chimera levels.
Main Methods:
- Sequencing of potential regulatory regions including transcription termination sites, insulators, and splicing sites.
- Analysis of CTCF binding levels to insulators in various cell lines and clinical samples.
- Comparison of SLC45A3-ELK4 expression with CTCF binding under different environmental conditions in prostate cancer cell lines.
Main Results:
- No mutations were detected in key regulatory regions or CTCF in LNCaP cells, suggesting a "soft-wired" mechanism.
- No inverse correlation was found between CTCF levels/binding and SLC45A3-ELK4 expression across different cell lines and clinical samples.
- In prostate cancer cell lines, environmental factors altered chimera expression, inversely correlating with CTCF binding.
Conclusions:
- CTCF and insulator binding are not the primary drivers of differential SLC45A3-ELK4 expression across diverse samples.
- CTCF likely mediates the regulation of SLC45A3-ELK4 chimeric RNA in response to environmental cues within specific cell types.
- This environmental response mechanism appears specific to SLC45A3-ELK4, as it was not observed in most other tested cis-SAGe events.
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