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

BMC Genomics
|October 3, 2007
PubMed
Abstract

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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