A dual, catalytic role for the fission yeast Ccr4-Not complex in gene silencing and heterochromatin spreading

Author:

Challal Drice1,Menant Alexandra1,Goksal Can2,Leroy Estelle1,Al-Sady Bassem2,Rougemaille Mathieu1

Affiliation:

1. Université Paris-Saclay, CEA, CNRS, Institute for Integrative Biology of the Cell (I2BC) , Gif-sur-Yvette 91198 , France

2. Department of Microbiology & Immunology, George Williams Hooper Foundation, University of California San Francisco , San Francisco, CA 94143 , USA

Abstract

Abstract Heterochromatic gene silencing relies on combinatorial control by specific histone modifications, the occurrence of transcription, and/or RNA degradation. Once nucleated, heterochromatin propagates within defined chromosomal regions and is maintained throughout cell divisions to warrant proper genome expression and integrity. In the fission yeast Schizosaccharomyces pombe, the Ccr4-Not complex partakes in gene silencing, but its relative contribution to distinct heterochromatin domains and its role in nucleation versus spreading have remained elusive. Here, we unveil major functions for Ccr4-Not in silencing and heterochromatin spreading at the mating type locus and subtelomeres. Mutations of the catalytic subunits Caf1 or Mot2, involved in RNA deadenylation and protein ubiquitinylation, respectively, result in impaired propagation of H3K9me3 and massive accumulation of nucleation-distal heterochromatic transcripts. Both silencing and spreading defects are suppressed upon disruption of the heterochromatin antagonizing factor Epe1. Overall, our results position the Ccr4-Not complex as a critical, dual regulator of heterochromatic gene silencing and spreading.

Funder

French Ministry of Research

National Science Foundation

National Institutes of Health

Centre National pour la Recherche Scientifique

the Fondation ARC

Agence Nationale de la Recherche

Flow Cytometry

UCSF Flow Cytometry Core

UCSF Diabetes Center

Publisher

Oxford University Press (OUP)

Subject

Genetics

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