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ISWI chromatin remodellers sense nucleosome modifications to determine substrate preference

Authors :
Zachary Z. Brown
Samuel B. Pollock
Katharine L. Diehl
C. David Allis
Rasmus Pihl
Geoffrey P. Dann
Felix Wojcik
Uyen T. T. Nguyen
Glen Liszczak
Manuel M. Müller
Jeffrey Bos
Tatyana Panchenko
Tom W. Muir
John D. Bagert
Source :
Dann, G P, Liszczak, G, Bagert, J D, Mueller, M M, Nguyen, U TT, Wojcik, F, Brown, Z Z, Bos, J, Pachenko, T, Pihl, R, Pollock, S B, Diehl, K L, Allis, C D & Muir, T W 2017, ' ISWI chromatin remodellers sense nucleosome modifications to determine substrate preference ', NATURE, vol. 548, no. 7669, pp. 607-611 . https://doi.org/10.1038/nature23671, Dann, G P, Liszczak, G P, Bagert, J D, Müller, M M, Nguyen, U T T, Wojcik, F, Brown, Z Z, Bos, J, Panchenko, T, Pihl, R, Pollock, S B, Diehl, K L, Allis, C D & Muir, T W 2017, ' ISWI chromatin remodellers sense nucleosome modifications to determine substrate preference ', Nature, vol. 548, no. 7669, pp. 607-611 . https://doi.org/10.1038/nature23671
Publication Year :
2017

Abstract

ATP-dependent chromatin remodellers regulate access to genetic information by controlling nucleosome positions in vivo1. However, the mechanism by which remodellers discriminate between different nucleosome substrates is poorly understood. Many chromatin remodelling proteins possess conserved protein domains that interact with nucleosomal features2. Here we used a quantitative high-throughput approach, based on the use of a DNA-barcoded mononucleosome library, to profile the biochemical activity of human ISWI family remodellers in response to a diverse set of nucleosome modifications. We show that accessory (non-ATPase) subunits of ISWI remodellers can distinguish between differentially modified nucleosomes, directing remodelling activity towards specific nucleosome substrates according to their modification state. Unexpectedly, we show that the nucleosome acidic patch3 is necessary for maximum activity of all ISWI remodellers evaluated. This dependence also extends to CHD and SWI/SNF family remodellers, suggesting that the acidic patch may be generally required for chromatin remodelling. Critically, remodelling activity can be regulated by modifications neighbouring the acidic patch, signifying that it may act as a tunable interaction hotspot for ATP-dependent chromatin remodellers and, by extension, many other chromatin effectors that engage this region of the nucleosome surface4,5,6,7,8,9.

Details

Language :
English
Database :
OpenAIRE
Journal :
Dann, G P, Liszczak, G, Bagert, J D, Mueller, M M, Nguyen, U TT, Wojcik, F, Brown, Z Z, Bos, J, Pachenko, T, Pihl, R, Pollock, S B, Diehl, K L, Allis, C D & Muir, T W 2017, ' ISWI chromatin remodellers sense nucleosome modifications to determine substrate preference ', NATURE, vol. 548, no. 7669, pp. 607-611 . https://doi.org/10.1038/nature23671, Dann, G P, Liszczak, G P, Bagert, J D, Müller, M M, Nguyen, U T T, Wojcik, F, Brown, Z Z, Bos, J, Panchenko, T, Pihl, R, Pollock, S B, Diehl, K L, Allis, C D & Muir, T W 2017, ' ISWI chromatin remodellers sense nucleosome modifications to determine substrate preference ', Nature, vol. 548, no. 7669, pp. 607-611 . https://doi.org/10.1038/nature23671
Accession number :
edsair.doi.dedup.....26bb907bed5f1dd15166570c8636256c
Full Text :
https://doi.org/10.1038/nature23671