PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 15, 2026Journal of Biological Chemistry0 citationsOpen Access

Histone H2B-associated proteins: the Arabidopsis nucleolin 1 binds H2B and facilitates nucleosome disassembly via RNA-dependent mechanism

View Full Paper
NYNaveen Kumar YarraJSJeevan R. SingiriZAZachor Agmon-Adler

Key Points

  • This research investigates the interactions of histone H2B.9 variants in Arabidopsis and their associated proteins.
  • Examined nuclear extracts from H2B.9-GFP-expressing plants using GFP-Trap and proteome analysis.
  • Identified 106 proteins associated with H2B.9 including chromatin remodeling factors and nucleolar proteins.
  • Investigated the binding of AtNuc-L1 to histone H2B and its role in nucleosome disassembly.
  • AtNuc-L1 specifically binds to histone H2B, facilitating nucleosome disassembly in a RNA-dependent manner.
  • Nucleosome disassembly involves additional nuclear factors.
  • AtNuc-L1 functions similarly to animal nucleolins in rRNA transcription and chromatin organization.

Abstract

To gain insight into the function of histone H2B variants in Arabidopsis, we studied the histone H2B.9 variant, attempting to uncover its interacting proteins. Accordingly, nuclear extract derived from H2B.9-GFP-expressing plants was subjected to GFP-Trap followed by proteome analysis. This analysis revealed 106 H2B.9-associated proteins, among them splicing factors, chromatin remodeling factors, and nucleolar proteins, including the histone chaperone nucleolin 1 (AtNuc-L1). Like animal nucleolins, AtNuc-L1 is known for its function in rRNA transcription and ribosome biogenesis, as well as its role in chromatin organization and nucleosome sliding; yet, the molecular mechanism underlying its function remains unclear. We showed that it specifically binds histone H2B, but not other core histones, in the context of nucleosomes and facilitates disassembly of naturally occurring nucleosomes derived from tobacco leaves via chromatin fractionation. This activity requires additional nuclear factors and is dependent on binding RNA molecules. Thus, our findings reveal the magnitude of nuclear processes potentially mediated by histone H2B and provide evidence for the role of the H2B-interacting AtNuc-L1 in RNA-dependent nucleosome disassembly.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Yarra et al. (2026) studied this question.

synapsesocial.com/papers/6a06b74ce7dec685947aa468https://doi.org/10.1016/j.jbc.2026.113137
Ask AI
Helpful
Bookmark
Share
View Full Paper