4.8 Article

Antisense-mediated repression of SAGA-dependent genes involves the HIR histone chaperone

Journal

NUCLEIC ACIDS RESEARCH
Volume 50, Issue 8, Pages 4515-4528

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkac264

Keywords

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Funding

  1. Swiss National Science Foundation
  2. Canton of Geneva

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In this study, the researchers developed a genetic screen to identify new factors involved in Antisense-Mediated Transcription Interference (AMTI). They found that the HIR histone chaperone complex is involved in repressing the promoters of SAGA-dependent genes through antisense non-coding transcription. However, the presence of antisense transcription at gene promoters is not sufficient to determine the mode of gene regulation.
Eukaryotic genomes are pervasively transcribed by RNA polymerase II (RNAPII), and transcription of long non-coding RNAs often overlaps with coding gene promoters. This might lead to coding gene repression in a process named Transcription Interference (TI). In Saccharomyces cerevisiae, TI is mainly driven by antisense non-coding transcription and occurs through re-shaping of promoter Nucleosome-Depleted Regions (NDRs). In this study, we developed a genetic screen to identify new players involved in Antisense-Mediated Transcription Interference (AMTI). Among the candidates, we found the HIR histone chaperone complex known to be involved in de novo histone deposition. Using genome-wide approaches, we reveal that HIR-dependent histone deposition represses the promoters of SAGA-dependent genes via antisense non-coding transcription. However, while antisense transcription is enriched at promoters of SAGA-dependent genes, this feature is not sufficient to define the mode of gene regulation. We further show that the balance between HIR-dependent nucleosome incorporation and transcription factor binding at promoters directs transcription into a SAGA- or TFIID-dependent regulation. This study sheds light on a new connection between antisense non-coding transcription and the nature of coding transcription initiation.

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