4.1 Article

Interplay between chromatin modulators and histone acetylation regulates the formation of accessible chromatin in the upstream regulatory region of fission yeast fbp1

Journal

GENES & GENETIC SYSTEMS
Volume 92, Issue 6, Pages 267-276

Publisher

GENETICS SOC JAPAN
DOI: 10.1266/ggs.17-00018

Keywords

ATP-dependent chromatin remodeler; histone acetyl transferase; Snf22; Hrp3; Gcn5

Funding

  1. Radioisotope Research Center in Tokyo Metropolitan University
  2. JSPS KAKENHI [25281021, 26116518, 24114509, 16K12598, 16H02957, 26291018, 16J02252]
  3. Takeda Science Foundation
  4. Grants-in-Aid for Scientific Research [17H06380, 26116518, 16J02252, 16H02957, 24114509, 25281021, 16H06306, 26291018, 16K12598] Funding Source: KAKEN

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Numerous noncoding RNA transcripts are detected in eukaryotic cells. Non coding RNAs transcribed across gene promoters are involved in the regulation of mRNA transcription via chromatin modulation. This function of noncoding RNA transcription was first demonstrated for the fission yeast fbp1 gene, where a cascade of noncoding RNA transcription events induces chromatin remodeling to facilitate transcription factor binding. We recently demonstrated that the noncoding RNAs from the fbp1 upstream region facilitate binding of the transcription activator Atf1 and thereby promote histone acetylation. Histone acetylation by histone acetyl transferases (HATs) and ATP-dependent chromatin remodelers (ADCRs) are implicated in chromatin remodeling, but the interplay between HATs and ADCRs in this process has not been fully elucidated. Here, we examine the roles played by two distinct ADCRs, Snf22 and Hrp3, and by the HAT Gcn5 in the transcriptional activation of fbp1. Snf22 and Hrp3 redundantly promote disassembly of chromatin in the fbp1 upstream region. Gcn5 critically contributes to nucleosome eviction in the absence of either Snf22 or Hrp3, presumably by recruiting Hrp3 in snf22 Delta cells and Snf22 in hrp3 Delta cells. Conversely, Gcn5-dependent histone H3 acetylation is impaired in snf22 Delta/hrp3 Delta cells, suggesting that both redundant ADCRs induce recruitment of Gcn5 to the chromatin array in the fbp1 upstream region. These results reveal a previously unappreciated interplay between ADCRs and histone acetylation in which histone acetylation facilitates recruitment of ADCRs, while ADCRs are required for histone acetylation.

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