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Updated: Jul 11, 2026

Genome-wide Analysis using ChIP to Identify Isoform-specific Gene Targets
Published on: July 7, 2010
RBM6-RBM5 transcription-induced chimeras are differentially expressed in tumours
Ke Wang1, Gino Ubriaco, Leslie C Sutherland
1Tumour Biology Group, Regional Cancer Program of the Sudbury Regional Hospital, Sudbury, Ontario, Canada. kwang@hrsrh.on.ca
Unlabelled:
Transcription-induced chimerism, a mechanism involving the transcription and intergenic splicing of two consecutive genes, has recently been estimated to account for approximately 5% of the human transcriptome. Despite this prevalence, the regulation and function of these fused transcripts remains largely uncharacterised.
Results:
We identified three novel transcription-induced chimeras resulting from the intergenic splicing of a single RNA transcript incorporating the two neighbouring 3p21.3 tumour suppressor locus genes, RBM6 and RBM5, which encode the RNA Binding Motif protein 6 and RNA Binding Motif protein 5, respectively. Each of the three novel chimeric transcripts lacked exons 3, 6, 20 and 21 of RBM6 and exon 1 of RBM5. Differences between the transcripts were associated with the presence or absence of exon 4, exon 5 and a 17 nucleotide (nt) sequence from intron 10 of RBM6. All three chimeric transcripts incorporated the canonical splice sites from both genes (excluding the 17 nt intron 10 insertion). Differential expression was observed in tumour tissue compared to non-tumour tissue, and amongst tumour types. In breast tumour tissue, chimeric expression was associated with elevated levels of RBM6 and RBM5 mRNA, and increased tumour size. No protein expression was detected by in vitro transcription/translation.
Conclusion:
These results suggest that RBM6 mRNA experiences altered co-transcriptional gene regulation in certain cancers. The results also suggest that RBM6-RBM5 transcription-induced chimerism might be a process that is linked to the tumour-associated increased transcriptional activity of the RBM6 gene. It appears that none of the transcription-induced chimeras generates a protein product; however, the novel alternative splicing, which affects putative functional domains within exons 3, 6 and 11 of RBM6, does suggest that the generation of these chimeric transcripts has functional relevance. Finally, the association of chimeric expression with breast tumour size suggests that RBM6-RBM5 chimeric expression may be a potential tumour differentiation marker.
Insights
Transcription-induced chimerism, involving fused transcripts from consecutive genes, is prevalent but poorly understood. Researchers identified novel RBM6-RBM5 chimeras in tumors, suggesting a role in cancer progression and potential as a tumor marker.
Area of Science:
- Molecular Biology
- Genomics
- Cancer Research
Background:
- Transcription-induced chimerism is a recently identified mechanism affecting ~5% of the human transcriptome.
- The regulation and functional significance of these fused transcripts remain largely uncharacterized.
Purpose of the Study:
- To identify and characterize novel transcription-induced chimeras.
- To investigate the potential role of RBM6-RBM5 chimerism in cancer.
Main Methods:
- Identification of novel chimeric transcripts through intergenic splicing of RBM6 and RBM5 genes.
- Analysis of differential gene expression in tumor vs. non-tumor tissues.
- In vitro transcription/translation to assess protein expression.
Main Results:
- Three novel RBM6-RBM5 chimeric transcripts were identified, with variations in specific exons and intron sequences.
- Chimeric expression was differentially observed in tumor tissues and associated with increased RBM6 and RBM5 mRNA levels and larger tumor size in breast cancer.
- No protein product was detected from the chimeric transcripts.
Conclusions:
- RBM6 mRNA undergoes altered co-transcriptional regulation in certain cancers.
- RBM6-RBM5 chimerism may be linked to increased RBM6 transcriptional activity in tumors.
- The alternative splicing suggests functional relevance, and RBM6-RBM5 chimeric expression could serve as a tumor differentiation marker.
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