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Reference - PMID:33260998 - High-Throughput Flow Cytometry Combined with Genetic Analysis Brings New Insights into the Understanding of Chromatin Regulation of Cellular Quiescence.

Reference summary

PubMed ID
PMID:33260998
Title
High-Throughput Flow Cytometry Combined with Genetic Analysis Brings New Insights into the Understanding of Chromatin Regulation of Cellular Quiescence.
Authors
Zahedi Y, Durand-Dubief M, Ekwall K
Citation
Int J Mol Sci 2020 Nov 27;21(23)
Publication year
2020
Abstract
Cellular quiescence is a reversible differentiation state when cells are changing the gene expression program to reduce metabolic functions and adapt to a new cellular environment. When fission yeast cells are deprived of nitrogen in the absence of any mating partner, cells can reversibly arrest in a differentiated G 0 -like cellular state, called quiescence. This change is accompanied by a marked alteration of nuclear organization and a global reduction of transcription. Using high-throughput flow cytometry combined with genetic analysis, we describe the results of a comprehensive screen for genes encoding chromatin components and regulators that are required for the entry and the maintenance of cellular quiescence. We show that the histone acetylase and deacetylase complexes, SAGA and Rpd3, have key roles both for G 0 entry and survival during quiescence. We reveal a novel function for the Ino80 nucleosome remodeling complex in cellular quiescence. Finally, we demonstrate that components of the MRN complex, Rad3, the nonhomologous end-joining, and nucleotide excision DNA repair pathways are essential for viability in G 0.

Annotation

Single locus phenotype

FYPO:0000427 - abnormal G1 to G0 transition

Genes:

Genotypes:

FYPO:0006518 - loss of viability in G0

Genes:

Genotypes:

FYPO:0007553 - normal G1 to G0 transition

Genes:

Genotypes: