Clarkson, Christopher T and Deeks, Emma A and Samarista, Ralph and Mamayusupova, Hulkar and Zhurkin, Victor B and Teif, Vladimir B (2019) CTCF-dependent chromatin boundaries formed by asymmetric nucleosome arrays with decreased linker length. Working Paper. bioRxiv. (Unpublished)
Clarkson, Christopher T and Deeks, Emma A and Samarista, Ralph and Mamayusupova, Hulkar and Zhurkin, Victor B and Teif, Vladimir B (2019) CTCF-dependent chromatin boundaries formed by asymmetric nucleosome arrays with decreased linker length. Working Paper. bioRxiv. (Unpublished)
Clarkson, Christopher T and Deeks, Emma A and Samarista, Ralph and Mamayusupova, Hulkar and Zhurkin, Victor B and Teif, Vladimir B (2019) CTCF-dependent chromatin boundaries formed by asymmetric nucleosome arrays with decreased linker length. Working Paper. bioRxiv. (Unpublished)
Abstract
The CCCTC-binding factor (CTCF) organises the genome in 3D through DNA loops and in 1D by setting boundaries isolating different chromatin states, but these processes are not well understood. Here we focus on the relationship between CTCF binding and the decrease of the Nucleosome Repeat Length (NRL) for ∼20 adjacent nucleosomes, affecting up to 10% of the mouse genome. We found that the chromatin boundary near CTCF is created by the nucleosome-depleted region (NDR) asymmetrically located >40 nucleotides 5’-upstream from the centre of CTCF motif. The strength of CTCF binding to DNA is correlated with the decrease of NRL near CTCF and anti-correlated with the level of asymmetry of the nucleosome array. Individual chromatin remodellers have different contributions, with Snf2h having the strongest effect on the NRL decrease near CTCF and Chd4 playing a major role in the symmetry breaking. Upon differentiation of embryonic stem cells to neural progenitor cells and embryonic fibroblasts, a subset of common CTCF sites preserved in all three cell types maintains a relatively small local NRL despite genome-wide NRL increase. The sites which lost CTCF upon differentiation are characterised by nucleosome rearrangement 3’-downstream, but the boundary defined by the NDR 5’-upstream of CTCF motif remains.
Item Type: | Monograph (Working Paper) |
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Divisions: | Faculty of Science and Health Faculty of Science and Health > Life Sciences, School of |
SWORD Depositor: | Unnamed user with email elements@essex.ac.uk |
Depositing User: | Unnamed user with email elements@essex.ac.uk |
Date Deposited: | 23 Oct 2019 14:24 |
Last Modified: | 22 Sep 2022 10:47 |
URI: | http://repository.essex.ac.uk/id/eprint/25700 |
Available files
Filename: 618827.full.pdf