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Chimeric RNAs Discovered by RNA Sequencing and Their Roles in Cancer and Rare Genetic Diseases

Journal

GENES
Volume 13, Issue 5, Pages -

Publisher

MDPI
DOI: 10.3390/genes13050741

Keywords

RNA sequencing; chimeric RNA; cis-splicing of adjacent genes; trans-splicing

Funding

  1. NIGMS [R01GM132138]

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Chimeric RNAs, generated by gene fusion and intergenic splicing, can serve as potential diagnostic biomarkers in cancer and rare inherited diseases, as well as providing new tools for cancer prognosis and insights into tumor origins. RNA sequencing technology enhances diagnostic capabilities for genetic diseases and deepens understanding of these diseases.
Chimeric RNAs are transcripts that are generated by gene fusion and intergenic splicing events, thus comprising nucleotide sequences from different parental genes. In the past, Northern blot analysis and RT-PCR were used to detect chimeric RNAs. However, they are low-throughput and can be time-consuming, labor-intensive, and cost-prohibitive. With the development of RNA-seq and transcriptome analyses over the past decade, the number of chimeric RNAs in cancer as well as in rare inherited diseases has dramatically increased. Chimeric RNAs may be potential diagnostic biomarkers when they are specifically expressed in cancerous cells and/or tissues. Some chimeric RNAs can also play a role in cell proliferation and cancer development, acting as tools for cancer prognosis, and revealing new insights into the cell origin of tumors. Due to their abilities to characterize a whole transcriptome with a high sequencing depth and intergenically identify spliced chimeric RNAs produced with the absence of chromosomal rearrangement, RNA sequencing has not only enhanced our ability to diagnose genetic diseases, but also provided us with a deeper understanding of these diseases. Here, we reviewed the mechanisms of chimeric RNA formation and the utility of RNA sequencing for discovering chimeric RNAs in several types of cancer and rare inherited diseases. We also discussed the diagnostic, prognostic, and therapeutic values of chimeric RNAs.

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