4.8 Article

Acetylation-modulated communication between the H3 N-terminal tail domain and the intrinsically disordered H1 C-terminal domain

Journal

NUCLEIC ACIDS RESEARCH
Volume 48, Issue 20, Pages 11510-11520

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkaa949

Keywords

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Funding

  1. National Institutes of Health [R01GM052426, T32GM068411]
  2. JSPS KAKENHI [JP18H05534]
  3. Platform Project for Supporting Drug Discovery and Life Science Research (BINDS) from AMED [JP20am0101076]
  4. JST ERATO [JPMJER1901]
  5. JST PRESTO [JPMJPR19K6]

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Linker histones (H1s) are key structural components of the chromatin of higher eukaryotes. However, the mechanisms by which the intrinsically disordered linker histone carboxy-terminal domain (H1 CTD) influences chromatin structure and gene regulation remain unclear. We previously demonstrated that the CTD of H1.0 undergoes a significant condensation (reduction of end-to-end distance) upon binding to nucleosomes, consistent with a transition to an ordered structure or ensemble of structures. Here, we show that deletion of the H3 N-terminal tail or the installation of acetylation mimics or bona fide acetylation within H3 N-terminal tail alters the condensation of the nucleosome-bound H1 CTD. Additionally, we present evidence that the H3 N-tail influences H1 CTD condensation through direct protein-protein interaction, rather than alterations in linker DNA trajectory. These results support an emerging hypothesis wherein the H1 CTD serves as a nexus for signaling in the nucleosome.

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