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Gene Fusions Derived by Transcriptional Readthrough are Driven by Segmental Duplication in Human.

Ann M McCartney | Edel M Hyland | Paul Cormican | Raymond J Moran | Andrew E Webb | Kate D Lee | Jessica Hernandez-Rodriguez | Javier Prado-Martinez | Christopher J Creevey | Julie L Aspden | James O McInerney | Tomas Marques-Bonet | Mary J O'Connell
Genome biology and evolution | 2019

Gene fusion occurs when two or more individual genes with independent open reading frames becoming juxtaposed under the same open reading frame creating a new fused gene. A small number of gene fusions described in detail have been associated with novel functions, for example, the hominid-specific PIPSL gene, TNFSF12, and the TWE-PRIL gene family. We use Sequence Similarity Networks and species level comparisons of great ape genomes to identify 45 new genes that have emerged by transcriptional readthrough, that is, transcription-derived gene fusion. For 35 of these putative gene fusions, we have been able to assess available RNAseq data to determine whether there are reads that map to each breakpoint. A total of 29 of the putative gene fusions had annotated transcripts (9/29 of which are human-specific). We carried out RT-qPCR in a range of human tissues (placenta, lung, liver, brain, and testes) and found that 23 of the putative gene fusion events were expressed in at least one tissue. Examining the available ribosome foot-printing data, we find evidence for translation of three of the fused genes in human. Finally, we find enrichment for transcription-derived gene fusions in regions of known segmental duplication in human. Together, our results implicate chromosomal structural variation brought about by segmental duplication with the emergence of novel transcripts and translated protein products.

Pubmed ID: 31400206

Associated grants

  • Agency: NIMH NIH HHS, United States
    Id: U01 MH106874

Publication data is provided by the National Library of Medicine ® and PubMed ®. Data is retrieved from PubMed ® on a weekly schedule. For terms and conditions see the National Library of Medicine Terms and Conditions.

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BLASTN (tool)

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RRID:SCR_002105

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RRID:SCR_002344

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RRID:SCR_003496

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RRID:SCR_013367

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RRID:SCR_014583

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