| Literature DB >> 30177756 |
Kilian R Knoll1,2, Sebastian Eustermann1,2, Vanessa Niebauer1,2, Elisa Oberbeckmann3, Gabriele Stoehr1,2,4, Kevin Schall1,2, Alessandro Tosi1,2,5, Marianne Schwarz1,2,6, Andrea Buchfellner7, Philipp Korber3, Karl-Peter Hopfner8,9,10.
Abstract
Nuclear actin (N-actin) and actin-related proteins (Arps) are critical components of several chromatin modulating complexes, including the chromatin remodeler INO80, but their function is largely elusive. Here, we report the crystal structure of the 180-kDa Arp8 module of Saccharomyces cerevisiae INO80 and establish its role in recognition of extranucleosomal linker DNA. Arp8 engages N-actin in a manner distinct from that of other actin-fold proteins and thereby specifies recruitment of the Arp4-N-actin heterodimer to a segmented scaffold of the helicase-SANT-associated (HSA) domain of Ino80. The helical HSA domain spans over 120 Å and provides an extended binding platform for extranucleosomal entry DNA that is required for nucleosome sliding and genome-wide nucleosome positioning. Together with the recent cryo-electron microscopy structure of INO80Core-nucleosome complex, our findings suggest an allosteric mechanism by which INO80 senses 40-bp linker DNA to conduct highly processive chromatin remodeling.Entities:
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Year: 2018 PMID: 30177756 DOI: 10.1038/s41594-018-0115-8
Source DB: PubMed Journal: Nat Struct Mol Biol ISSN: 1545-9985 Impact factor: 15.369