4.8 Article

Multivalent di-nucleosome recognition enables the Rpd3S histone deacetylase complex to tolerate decreased H3K36 methylation levels

Journal

EMBO JOURNAL
Volume 31, Issue 17, Pages 3564-3574

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/emboj.2012.221

Keywords

chromatin recognition; di-nucleosome; epigenetics; HDAC

Funding

  1. National Research Foundation of Korea Grant (MEST) [NRF-2010-R13-0029523]
  2. National Institutes of Health [R01GM090077]
  3. Welch Foundation [I-1713]
  4. March of Dimes Foundation
  5. American Heart Association

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The Rpd3S histone deacetylase complex represses cryptic transcription initiation within coding regions by maintaining the hypo-acetylated state of transcribed chromatin. Rpd3S recognizes methylation of histone H3 at lysine 36 (H3K36me), which is required for its deacetylation activity. Rpd3S is able to function over a wide range of H3K36me levels, making this a unique system to examine how chromatin regulators tolerate the reduction of their recognition signal. Here, we demonstrated that Rpd3S makes histone modification-independent contacts with nucleosomes, and that Rpd3S prefers di-nucleosome templates since two binding surfaces can be readily accessed simultaneously. Importantly, this multivalent mode of interaction across two linked nucleosomes allows Rpd3S to tolerate a two-fold intramolecular reduction of H3K36me. Our data suggest that chromatin regulators utilize an intrinsic di-nucleosome-recognition mechanism to prevent compromised function when their primary recognition modifications are diluted. The EMBO Journal (2012) 31, 3564-3574. doi: 10.1038/emboj.2012.221; Published online 3 August 2012 Subject Categories: chromatin & transcription; proteins

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