Cross-talk within a functional INO80 complex dimer regulates nucleosome sliding
File(s)elife-25782-v2.pdf (1.64 MB)
Published version
Author(s)
Type
Journal Article
Abstract
Several chromatin remodellers have the ability to space nucleosomes on DNA. For ISWI remodellers, this involves an interplay between H4 histone tails, the AutoN and NegC motifs of the motor domains that together regulate ATPase activity and sense the length of DNA flanking the nucleosome. By contrast, the INO80 complex also spaces nucleosomes but is not regulated by H4 tails and lacks the AutoN and NegC motifs. Instead nucleosome sliding requires cooperativity between two INO80 complexes that monitor DNA length simultaneously on either side of the nucleosome during sliding. The C-terminal domain of the human Ino80 subunit (Ino80CTD) binds cooperatively to DNA and dimerisation of these domains provides crosstalk between complexes. ATPase activity, rather than being regulated, instead gradually becomes uncoupled as nucleosome sliding reaches an end point and this is controlled by the Ino80CTD. A single active ATPase motor within the dimer is sufficient for sliding.
Date Issued
2017-06-06
Date Acceptance
2017-06-03
Citation
eLife, 2017, 6
ISSN
2050-084X
Publisher
eLife Sciences Publications
Journal / Book Title
eLife
Volume
6
Copyright Statement
© 2017 Willhoft et al. This article is distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use and redistribution provided that the original author and source are credited.
Sponsor
Wellcome Trust
The Royal Society
Wellcome Trust
Wellcome Trust
Cancer Research UK
Cancer Research UK
Grant Number
091093/B/09/Z
WM110083
098412/Z/12/Z
095519/B/11/Z
12799
C6913/A21608
Subjects
Science & Technology
Life Sciences & Biomedicine
Biology
Life Sciences & Biomedicine - Other Topics
CHROMATIN-REMODELING COMPLEX
ACTIN-RELATED PROTEINS
STRAND BREAK REPAIR
HISTONE H4 TAIL
EXTRANUCLEOSOMAL DNA
CRYSTAL-STRUCTURE
BINDING
CHD1
ISWI
OCTAMER
Ino80
chromatin
chromosomes
cooperativity
genes
human
none
nucleosome
remodelling
Publication Status
Published
Article Number
e25782