Tandem chimerism as a means to increase protein complexity in the human genome
Open Access
- 12 December 2005
- journal article
- Published by Cold Spring Harbor Laboratory in Genome Research
- Vol. 16 (1) , 37-44
- https://doi.org/10.1101/gr.4145906
Abstract
The “one-gene, one-protein” rule, coined by Beadle and Tatum, has been fundamental to molecular biology. The rule implies that the genetic complexity of an organism depends essentially on its gene number. The discovery, however, that alternative gene splicing and transcription are widespread phenomena dramatically altered our understanding of the genetic complexity of higher eukaryotic organisms; in these, a limited number of genes may potentially encode a much larger number of proteins. Here we investigate yet another phenomenon that may contribute to generate additional protein diversity. Indeed, by relying on both computational and experimental analysis, we estimate that at least 4%–5% of the tandem gene pairs in the human genome can be eventually transcribed into a single RNA sequence encoding a putative chimeric protein. While the functional significance of most of these chimeric transcripts remains to be determined, we provide strong evidence that this phenomenon does not correspond to mere technical artifacts and that it is a common mechanism with the potential of generating hundreds of additional proteins in the human genome.Keywords
This publication has 38 references indexed in Scilit:
- Delay in Synthesis of the 3′ Splice Site Promotes trans-Splicing of the Preceding 5′ Splice SiteMolecular Cell, 2005
- Widespread A-to-I RNA Editing of Alu-Containing mRNAs in the Human TranscriptomePLoS Biology, 2004
- Finishing the euchromatic sequence of the human genomeNature, 2004
- The human GRINL1A gene defines a complex transcription unit, an unusual form of gene organization in eukaryotesGenomics, 2004
- 5′-end SAGE for the analysis of transcriptional start sitesNature Biotechnology, 2004
- Initial sequencing and comparative analysis of the mouse genomeNature, 2002
- Cotranscription and Intergenic Splicing of HumanP2Y and SSF1 GenesPublished by Elsevier ,2001
- Fusion of the Human Gene for the Polyubiquitination Coeffector UEV1 with Kua, a Newly Identified GeneGenome Research, 2000
- Detecting Protein Function and Protein-Protein Interactions from Genome SequencesScience, 1999
- MacroH2A, a Core Histone Containing a Large Nonhistone RegionScience, 1992