Abstract
In growing eukaryotic cells, nuclear ribosomal (r)RNA synthesis by RNA polymerase (RNAP) I accounts for the vast majority of cellular transcription. This high output is achieved by the presence of multiple copies of rRNA genes in eukaryotic genomes transcribed at a high rate. In contrast to most of the other transcribed genomic loci, actively transcribed rRNA genes are largely devoid of nucleosomes adapting a characteristic “open” chromatin state, whereas a significant fraction of rRNA genes resides in a transcriptionally inactive nucleosomal “closed” chromatin state. Here, we review our current knowledge about the nature of open rRNA gene chromatin and discuss how this state may be established.
Author supplied keywords
- Chromatin
- Chromatin endogenous cleavage (ChEC)
- Chromatin immunoprecipitation (ChIP)
- Electron microscopy (EM)
- High mobility group (HMG) box proteins
- Hmo1
- Nucleolar organizer region (NOR)
- Nucleolus
- Nucleosome
- Preinitiation complex (PIC)
- Psoralen cross-linking
- RNA polymerase I
- Ribosomal DNA
- Ribosomal RNA genes
- Transcription
- Upstream binding factor (UBF)
Cite
CITATION STYLE
Schächner, C., Merkl, P. E., Pilsl, M., Schwank, K., Hergert, K., Kruse, S., … Griesenbeck, J. (2022). Establishment and Maintenance of Open Ribosomal RNA Gene Chromatin States in Eukaryotes. In Methods in Molecular Biology (Vol. 2533, pp. 25–38). Humana Press Inc. https://doi.org/10.1007/978-1-0716-2501-9_2
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