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FACT complex is involved in elongation and ensures fidelity in the initiation step of transcription by RNA polymerase (pol) II. Histone variant H2A.Z is found in nucleosomes at the 5'-end of many genes. We report here H2A.Z-chaperone activity of the yeast FACT complex on the short, nucleosome-free, non-coding, pol III-transcribed yeast tRNA genes. On a prototype gene, yeast SUP4, chromatin remodeler RSC and FACT regulate its transcription through novel mechanisms, wherein the two gene-flanking nucleosomes containing H2A.Z, play different roles. Nhp6, which ensures transcription fidelity and helps load yFACT onto the gene flanking nucleosomes, has inhibitory role. RSC maintains a nucleosome abutting the gene terminator downstream, which results in reduced transcription rate in active state while H2A.Z probably helps RSC in keeping the gene nucleosome-free and serves as stress-sensor. All these factors maintain an epigenetic state which allows the gene to return quickly from repressed to active state and tones down the expression from the active SUP4 gene, required probably to maintain the balance in cellular tRNA pool.
Pubmed ID: 21266479
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This tool allows you to submit a genomic sequence and to recieve a prediction of the nucleosomes positions on it, based on the nucleosome-DNA interaction model that we developed in these papers: * Segal et al., A Genomic Code for Nucleosome Positioning, Nature 2006 * Field et al., Distinct Modes of Regulation by Chromatin Encoded through Nucleosome Positioning Signals, PLoS Comp Biol. 2008 * Kaplan et al., The DNA-Encoded Nucleosome Organization of a Eukaryotic Genome, Nature 2008 We recommend using the latest version of the model (Version 3), which is applicable to all species. Paste in a sequence to analyze or upload file. You can provide multiple sequences in fasta format (separate sequences by lines starting with ''>'' followed by the sequence name). The length of each sequence must be between 147bp and 40kb bp. Note: Due to boundary effects, we highly recommend that you add at least 5000 bp of flanking sequence around your sequence of interest. You can generate the nucleosomes positioning predictions on your own machine using our executable and wrapping Perl scripts.
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