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The ISW1 and CHD1 ATP-dependent chromatin remodelers compete to set nucleosome spacing in vivo.


ABSTRACT: Adenosine triphosphate-dependent chromatin remodeling machines play a central role in gene regulation by manipulating chromatin structure. Most genes have a nucleosome-depleted region at the promoter and an array of regularly spaced nucleosomes phased relative to the transcription start site. In vitro, the three known yeast nucleosome spacing enzymes (CHD1, ISW1 and ISW2) form arrays with different spacing. We used genome-wide nucleosome sequencing to determine whether these enzymes space nucleosomes differently in vivo We find that CHD1 and ISW1 compete to set the spacing on most genes, such that CHD1 dominates genes with shorter spacing and ISW1 dominates genes with longer spacing. In contrast, ISW2 plays a minor role, limited to transcriptionally inactive genes. Heavily transcribed gene

SUBMITTER: Ocampo J 

PROVIDER: S-EPMC4889916 | biostudies-literature | 2016 Jun

REPOSITORIES: biostudies-literature

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