Autor: |
Wyse, Brandon, Oshidari, Roxanne, Rowlands, Hollie, Abbasi, Sanna, Yankulov, Krassimir |
Zdroj: |
Nucleus; July 2016, Vol. 7 Issue: 4 p405-414, 10p |
Abstrakt: |
ABSTRACTChromatin structures are transmitted to daughter cells through a complex system of nucleosome disassembly and re-assembly at the advancing replication forks. However, the role of replication pausing in the transmission and perturbation of chromatin structures has not been addressed. RRM3encodes a DNA helicase, which facilitates replication at sites covered with non-histone protein complexes (tRNAgenes, active gene promoters, telomeres) in Saccharomyces cerevisiae. In this report we show that the deletion of RRM3reduces the frequency of epigenetic conversions in the subtelomeric regions of the chromosomes. This phenotype is strongly dependent on 2 histone chaperones, CAF-I and ASF1, which are involved in the reassembly of nucleosomes behind replication forks, but not on the histone chaperone HIR1. We also show that the deletion of RRM3increases the spontaneous mutation rates in conjunction with CAF-I and ASF1, but not HIR1. Finally, we demonstrate that Rrm3p and CAF-I compete for the binding to the DNA replication clamp PCNA (Proliferating Cell Nuclear Antigen). We propose that the stalling of DNA replication predisposes to epigenetic conversions and that RRM3and CAF-I play key roles in this process. |
Databáze: |
Supplemental Index |
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