Chromatin-Associated Periodicity in Genetic Variation Downstream of Transcriptional Start Sites
- 16 January 2009
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 323 (5912) , 401-404
- https://doi.org/10.1126/science.1163183
Abstract
Might DNA sequence variation reflect germline genetic activity and underlying chromatin structure? We investigated this question using medaka (Japanese killifish, Oryzias latipes), by comparing the genomic sequences of two strains (Hd-rR and HNI) and by mapping ∼37.3 million nucleosome cores from Hd-rR blastulae and 11,654 representative transcription start sites from six embryonic stages. We observed a distinctive ∼200–base pair (bp) periodic pattern of genetic variation downstream of transcription start sites; the rate of insertions and deletions longer than 1 bp peaked at positions of approximately +200, +400, and +600 bp, whereas the point mutation rate showed corresponding valleys. This ∼200-bp periodicity was correlated with the chromatin structure, with nucleosome occupancy minimized at positions 0, +200, +400, and +600 bp. These data exemplify the potential for genetic activity (transcription) and chromatin structure to contribute to molding the DNA sequence on an evolutionary time scale.Keywords
This publication has 23 references indexed in Scilit:
- A high-resolution, nucleosome position map of C. elegans reveals a lack of universal sequence-dictated positioningGenome Research, 2008
- Transcription induces strand-specific mutations at the 5′ end of human genesGenome Research, 2008
- Nucleosome organization in the Drosophila genomeNature, 2008
- Dynamic Regulation of Nucleosome Positioning in the Human GenomeCell, 2008
- Chromatin remodelling at promoters suppresses antisense transcriptionNature, 2007
- A high-resolution atlas of nucleosome occupancy in yeastNature Genetics, 2007
- The medaka draft genome and insights into vertebrate genome evolutionNature, 2007
- Translational and rotational settings of H2A.Z nucleosomes across the Saccharomyces cerevisiae genomeNature, 2007
- Chromatin structure and evolution in the human genomeBMC Ecology and Evolution, 2007
- Flexibility and constraint in the nucleosome core landscape of Caenorhabditis elegans chromatinGenome Research, 2006