Epigenomic replication: Linking epigenetics to DNA replication
- 13 June 2003
- Vol. 25 (7) , 647-656
- https://doi.org/10.1002/bies.10305
Abstract
The information contained within the linear sequence of bases (the genome) must be faithfully replicated in each cell cycle, with a balance of constancy and variation taking place over the course of evolution. Recently, it has become clear that additional information important for genetic regulation is contained within the chromatin proteins associated with DNA (the epigenome). Epigenetic information also must be faithfully duplicated in each cell cycle, with a balance of constancy and variation taking place during the course of development to achieve differentiation while maintaining identity within cell lineages. Both the genome and the epigenome are synthesized at the replication fork, so the events occurring during S‐phase provide a critical window of opportunity for eliciting change or maintaining existing genetic states. Cells discriminate between different states of chromatin through the activities of proteins that selectively modify the structure of chromatin. Several recent studies report the localization of certain chromatin modifying proteins to replication forks at specific times during S‐phase. Since transcriptionally active and inactive chromosome domains generally replicate at different times during S‐phase, this spatiotemporal regulation of chromatin assembly proteins may be an integral part of epigenetic inheritance. BioEssays 25:647–656, 2003.Keywords
This publication has 101 references indexed in Scilit:
- Tps1 regulates the pentose phosphate pathway, nitrogen metabolism and fungal virulenceThe EMBO Journal, 2007
- An ACF1–ISWI chromatin-remodeling complex is required for DNA replication through heterochromatinNature Genetics, 2002
- Replication timing and metazoan evolutionNature Genetics, 2002
- Chromosomal gradient of histone acetylation established by Sas2p and Sir2p functions as a shield against gene silencingNature Genetics, 2002
- Sir2p and Sas2p opposingly regulate acetylation of yeast histone H4 lysine16 and spreading of heterochromatinNature Genetics, 2002
- Genome-wide DNA replication profile for Drosophila melanogaster: a link between transcription and replication timingNature Genetics, 2002
- DNA methylation patterns and epigenetic memoryGenes & Development, 2002
- Non–coding RNA genes and the modern RNA worldNature Reviews Genetics, 2001
- Translating the Histone CodeScience, 2001
- The language of covalent histone modificationsNature, 2000